188. A mesoporous Zr-based metal-organic framework driven by the assembly of an octatopic linker

B. Ortín-Rubio, C. Perona, J. A. Suárez del Pino, F. J. Carmona, F. Gándara, J. A. R. Navarro, J. Juanhuix, I. Imaz and D. Maspoch,

Chem. Commun., 2023, DOI: 10.1039/D3CC01831H.

[Full text]

187. Self-assembly of colloidal metal–organic framework (MOF) particles

J. Fonseca, L. Meng, I. Imaz, D. Maspoch

Chem. Soc. Rev., 2023, DOI: 10.1039/d2cs00858k.

[Full text]

186. Monolithic zirconium-based metal-organic frameworks for energy-efficient water adsorption applications

C. Çamur, R. Babu, J. A. Suárez del Pino, N. Rampal, J. Pérez-Carvajal, Ph. Hügenell, S.-J. Ernst, J. Silvestre-Albero, I. Imaz, D. G. Madden, D. Maspoch, D. Fairen-Jimenez

Adv. Mater., 2023, DOI: 10.1002/adama. 202209104.

[Full text]

185. Improvement of carbon dioxide electroreduction by crystal surface modification of ZIF-8

T. Zhang, H. Liu , X. Han , M. Biset-Peiró, Y. Yang , I. Imaz, D. Maspoch, B. Yang, J. R. Morante, J. Arbiol

Dalton Trans., 2023, DOI: 10.1039/D3DT00185G.

[Full text]

184. Molecular layer deposition of zeolitic imidazolate framework-8 films

J. Smets, A. J. Cruz, V. Rubio-Giménez, M. L. Tietze, D. E. Kravchenko, G. Arnauts, A. Matavž, N. Wauteraerts, M. Tu, K. Marcoen, I. Imaz, D. Maspoch, M. Korytov, P. M. Vereecken, S. De Feyter, T. Hauffman, R. Ameloot 

Chem. Mater., 2023, DOI: 10.1021/acs.chemmater.2c03439

[Full text]

183. Stepwise assembly of heterometallic, heteroleptic “Triblock Ja-nus-type” metal-organic polyhedra

C. von Baeckmann, S. Ruiz-Relaño, I. Imaz, M. Handke, J. Juanhuix, F. Gándara, A. Carné-Sánchez, D. Maspoch 

Chem. Commun., 2023, DOI: 10.1039/D2CC06815J.

[Full text]

182. Ammonia capture in rhodium(II)-based metal–organic polyhedra via synergistic coordinative and H-bonding interactions

A. Carné-Sánchez, J. Martínez-Esaín, T. Rookard, C. J. Flood, J. Faraudo, K. C. Stylianou, D. Maspoch 

ACS Appl. Mater. Interfaces, 2023, DOI: 10.1021/acsami.2c19206.

[Full text]

181. Propagating MOF flexibility at the macroscale: the case of MOF-based mechanical actuators

J. Troyano, D. Maspoch

Chem. Commun., 2023, DOI: 10.1039/d2cc05813h.

[Full text]


180. Multicomponent, functionalized HKUST-1 analogues assembled via reticulation of prefabricated metal–organic polyhedral cavities

A. Khobotov-Bakishev, C. von Baeckmann, B. Ortín-Rubio, L. Hernández-López, A. Cortés-Martínez, J. Martínez-Esaín, F. Gándara, J. Juanhuix, A. E. Platero-Prats, J. Faraudo, A. Carné-Sánchez, D. Maspoch

J. Am. Chem. Soc., 2022, 144, 15745−15753.

[Full text]

179. Synthesis of the two isomers of heteroleptic Rh12L6L’6 metal-organic polyhedra by screening of complementary linkers

A. Broto-Ribas, S. Gutiérrez, I. Imaz, A. Carné-Sánchez, F. Gándara, J. Juanhuix, D. Maspoch

Chem. Commun., 2022, DOI: 10.1039/D2CC03220A

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178. Influence of the surface chemistry of metal–organic polyhedra in their assembly into ultrathin films for gas separation

I. Tejedor, M. A. Andrés, A. Carné-Sánchez, M. Arjona, M. Pérez-Miana, J. Sánchez-Laínez, J. Coronas, P. Fontaine, M. Goldmann, O. Roubeau, D. Maspoch, I. Gascón

ACS Appl. Mater. Interfaces, 2022, 14, 23, 27495.

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177. How reproducible are surface areas calculated from the BET Equation?

J. W. M. Osterrieth, J. Rampersad, D. Madden, N. Rampal, L. Skoric, B. Connolly, M. D. Allendorf, V. Stavila, J. L. Snider, et al.

Adv. Mater., 2022, 34, 2201502.

[Full text]

176. pH-triggered removal of nitrogenous organic micropollutants from water by metal-organic polyhedra

L. Hernández-López, A. Cortés-Martínez, T. Parella, A. Carné-Sánchez, D. Maspoch

Chem. Eur. J., 2022, 28, e202200357.

[Full text]

175. Coloration in supraparticles assembled from polyhedral metal-organic framework particles

J. Wang, Y. Liu, G. Bleyer, E. S. A. Goerlitzer, S. Englisch, T. Przybilla, C. Fru Mbah, M. Engel, E. Spiecker, I. Imaz, D. Maspoch, N. Vogel

Angew. Chem. Int. Ed., 2022, e202117455.

[Full text]

174. Ultralarge free-standing imine-based covalent organic framework membranes fabricated via compression

J. Á. Martín-Illán, J. Antonio Suárez, J. Gómez-Herrero, P. Ares, D. Gallego-Fuente, Y. Cheng, D. Zhao, D. Maspoch, F. Zamora

Adv. Sci., 2022, 2104643.

[Full text]

173. Surface chemistry of metal-organic polyhedra

J. Albalad, L. Hernández-López, A. Carné‐Sánchez, D. Maspoch

Chem. Commun., 2022, 58, 2443.

[Full text]

172. Antibacterial films based on MOF composites that release iodine passively or upon triggering by near-infrared light

X. Han, G. Boix, M. Balcerzak, O. Hernando Moriones, M. Cano-Sarabia, P. Cortés, N. Bastús, V. Puntes, M. Llagostera, I. Imaz, D. Maspoch

Adv. Funct. Mater., 2022, 2112902.

[Full text]

171. Metal-Organic Polyhedra as building blocks for porous extended networks

A. Khobotov-Bakishev, L. Hernández-López, C. von Baeckmann, J. Albalad, A. Carné-Sánchez, D. Maspoch

Adv. Sci., 2022, 2104753.

[Full text]

170. Clip-off Chemistry: Synthesis by programmed disassembly of reticular materials

Y. Yang, A. Broto-Ribas, B. Ortín-Rubio, I. Imaz, F. Gándara, A. Carné-Sánchez, V. Guillerm, S. Jurado, F. Busqué, J. Juanhuix, D. Maspoch 

Angew. Chem. Int. Ed., 2022, 61, e202111228.

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169. Metal-Organic Frameworks: Why make them small?

J. Wang, I. Imaz, D. Maspoch 

Small Structures, 2022, 3, 2100126.

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168. Assembly of colloidal clusters driven by the polyhedral shape of metal–organic framework particles

Y. Liu, J. Wang, I. Imaz, D. Maspoch 

J. Am. Chem. Soc., 2021, 143, 12943−12947.

[Full text]

167. Photoredox heterobimetallic dual catalysis using engineered covalent organic frameworks

A. López-Magano, B. Ortín-Rubio, I. Imaz, D. Maspoch, J. Alemán, R. Mas-Ballesté 

ACS Catal., 2021, 11, 12344 − 12354.

[Full text]

166. Engineering covalent organic frameworks in the modulation of photocatalytic degradation of pollutants under visible light conditions

A. Jiménez-Almarza, A. López-Magano, R. Cano, B. Ortín-Rubio, D. Díaz-García, S. Gomez-Ruiz, I. Imaz, D. Maspoch, R. Mas-Ballesté, J. Alemán

Mater. Today Chem., 2021, 22, 100548.

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165. Perspectives for polychlorinated trityl radicals

I. Ratera, J. Vidal-Gancedo, D. Maspoch, S. T. Bromley, N. Crivillers, M. Mas-Torrent

J. Mater. Chem. C, 2021, 9, 10610.

[Full text]

164. A millimeter-shaped metal-organic framework/inorganic nanoparticle composite as a new adsorbent for home water-purification filters

G. Boix, X. Han, I. Imaz, D. Maspoch

ACS Appl. Mater. Interfaces, 2021, 13, 15, 17835–17843.

[Full text]

163. Macroscopic ultralight aerogel monoliths of imine‐based covalent organic frameworks

J. Á. Martín-Illán, D. Rodríguez-San-Miguel, O. Castillo, G. Beobide, J. Perez-Carvajal, I. Imaz, D. Maspoch, F. Zamora

Angew. Chem. Int. Ed., 2021, 60, 13969 –13977.

[Full text]

162. Elucidating pore chemistry within metal–organic frameworks via single crystal X-ray diffraction; from fundamental understanding to application

J. Albalad, C. J. Sumby, D. Maspoch, C. J. Doonan

CrystEngComm, 2021, 23, 2185-2195.

[Full text]

161. Steric hindrance in metal coordination drives the separation of pyridine regioisomers using rhodium(II)‐based Metal–Organic Polyhedra

L. Hernández-López, J. Martínez-Esaín, A. Carné-Sánchez, T. Grancha, J. Faraudo, D. Maspoch

Angew. Chem. Int. Ed., 2021, 60, 11406–11413.

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160. A three-shell supramolecular complex enables the symmetry-mismatched chemo- and regioselective bis-functionalization of C60

E. Ubasart, O. Borodin, C. Fuertes-Espinosa, Y. Xu, C. García-Simón, L. Gómez, J. Juanhuix, F. Gándara, I. Imaz, D. Maspoch, M. von Delius, X. Ribas

Nature Chemistry, 2021, 13, 420–427.

[Full text]

159. Heterogeneous catalysts with programmable topologies generated by reticulation of organocatalysts into metal-organic frameworks: The case of squaramide

A. Broto-Ribas, C. Vignatti, A. Jimenez-Almarza, J. Luis-Barrera, Z. Dolatkhah, F. Gándara, I. Imaz, R. Mas-Ballesté, J. Alemán, D. Maspoch

Nano Res., 2021, 14, 458-465.

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158. Synthesis of polycarboxylate Rh(II)-metal-organic polyhedra and their use as building blocks for highly-connected metal-organic frameworks

T. Grancha, A. Carné-Sánchez, F. Zarekarizi, L. Hernández-López, J. Albalad, A. Khobotov, V. Guillerm, A. Morsali, J. Juanhuix, F. Gándara, I. Imaz, D. Maspoch

Angew. Chem. Int. Ed., 2021, 60, 5793 –5797.

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157. Enzyme-powered porous micromotors built from a hierarchical micro- and mesoporous UiO-type metal−organic framework

Y. Yang, X. Arqué, T. Patiño, V. Guillerm, P.-R. Blersch, J. Pérez-Carvajal, I. Imaz, D. Maspoch, S. Sánchez

J. Am. Chem. Soc., 2020, 142, 50, 20962–20967.

[Full text]

156. Antigen-specific immunotherapy combined with a regenerative drug in the treatment of experimental type 1 diabetes

A. Villalba, S. Rodriguez-Fernandez, D. Perna-Barrull, R.-M. Ampudia, L. Gomez-Muñoz, I. Pujol-Autonell, E. Aguilera, R. M. Risueño, M. Cano-Sarabia, D. Maspoch, F. Vázquez, M. Vives-Pi

Sci Rep, 2020, 10, 18927.

[Full text]

155. Dynamic porous coordination polymers built-up from flexible 4,4′-dithiodibenzoate and rigid N-based ligands

N. Jarrah, J. Troyano, A. Carné-Sánchez, I. Imaz, S. Tangestaninejad, M. Moghadam, D. Maspoch

Dalton Trans. , 2020, 49, 13142-13151.

[Full text]

154. LipoBots: using liposomal vesicles as protective shell of urease-based nanomotors

A. C. Hortelão, S. García-Jimeno, M. Cano-Sarabia, T. Patiño, D. Maspoch, S. Sanchez

Adv. Funct. Mat., 2020, 30, 2002767.

[Full text]

153. Structural deterioration of well‐faceted MOFs upon H2S exposure and its effect in the adsorption performance

S. Reljic, A. Broto-Ribas, C. Cuadrado-Collados, E. O. Jardim, D. Maspoch, I. Imaz, J. Silvestre-Albero

Chem. Eur. J., 2020, 26, 17110 –17119.

[Full text]

152. Spray-drying synthesis of MOFs, COFs, and related composites

J. Troyano, C. Çamur, L. Garzón-Tovar, A. Carné-Sánchez, I. Imaz, D. Maspoch

Acc. Chem. Res., 2020, 53, 6, 1206−1217

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151. Green synthesis of imine-based covalent organic frameworks in water

J. Á. Martín-Illán, D. Rodríguez-San-Miguel, C. Franco, I. Imaz, D. Maspoch, J. Puigmartí-Luis, F. Zamora

Chem. Commun., 2020, 56, 6704-6707.

[Full text]

150. Net-Clipping: an approach to deduce the topology of metal-organic frameworks built with zigzag ligands

B. Ortín-Rubio, H. Ghasempour, V. Guillerm, A. Morsali, J. Juanhuix, I. Imaz, D. Maspoch

J. Am. Chem. Soc., 2020, 142, 20, 9135–9140.

[Full text]

149. A molecular approach for engineering interfacial interactions in magnetic-topological insulator heterostructures

M. G. Cuxart, M. A. Valbuena, R. Robles, C. Moreno, F. Bonell, G. Sauthier, I. Imaz, H. Xu, C. Nistor, A. Barla, P. Gargiani, M. Valvidares, D. Maspoch, P. Gambardella, S. O. Valenzuela, A. Mugarza

ACS Nano, 2020, 14, 5, 6285–6294.

[Full text]

148. MOF-Beads containing inorganic nanoparticles for the simultaneous removal of multiple heavy metals from water

G. Boix, J. Troyano, L. C. Garzon Tovar, C. Camur, N. Bermejo, A. Yazdi, J. Piella, N. Bastús, V. Puntes, I. Imaz, D. Maspoch

ACS Appl. Mater. Interfaces, 2020, 12, 10554-10562.

[Full text]

147. Biomimetic synthesis of sub-20 nanometer Covalent Organic Frameworks in water

C. Franco, D. Rodríguez-San-Miguel, A. Sorrenti, S. Sevim, R. Pons, A. E. Platero-Prats, M. Pavlovic, I. Szilagyi, M. L. Ruiz Gonzalez, J. M. González-Calbet, D. Bochicchio, L. Pesce, G. M. Pavan, I. Imaz, M. Cano-Sarabia, D. Maspoch, S. Pané, A. de Mello, F. Zamora, J. Puigmartí-Luis

J. Am. Chem. Soc., 2020, 142, 7, 3540–3547.

[Full text]

146. Preclinical evaluation of antigen-specific nanotherapy based on phosphatidylserine-liposomes for type 1 diabetes

A. Villalba, S. Rodriguez-Fernandez, R.-M. Ampudia, M. Cano-Sarabia, D. Perna-Barrull, C. Bertran-Cobo, C. Ehrenberg, D. Maspoch, M. Vives-Pi

Artif. Cell. Nanomed. Biotechnol., 2020, 48, 77-83.

[Full text]

145. Supramolecular fullerene sponges as catalytic masks for regioselective functionalization of C60

C. Fuertes-Espinosa, C. García-Simón, M. Pujals, M. Garcia-Borràs, L. Gómez, T. Parella, J. Juanhuix, I. Imaz, D. Maspoch, M. Costas, X. Ribas.

Chem, 2020, 6, 5-7.

[Full text]

144. Ultrathin films of porous Metal–Organic Polyhedra for gas separation

M. A. Andrés, A. Carné‐Sánchez, J. Sánchez‐Laínez, O. Roubeau, J. Coronas, D. Maspoch, I. Gascón.

Chem. Eur. J., 2020, 26, 143 –147.

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143. Impaired phagocytosis in dendritic cells from pediatric patients with type 1 diabetes does not hamper their tolerogenic potential

S. Rodriguez-Fernandez, M. Murillo, A. Villalba, D. Perna-Barrull, M. Cano-Sarabia, L. Gomez-Muñoz, E. Aguilera, D. Maspoch, F. Vazquez, J. Bel, M. Vives-Pi.

Front. Immunol., 2019, 10, 2881.

[Full text]

142. Dendritic cells from paediatric patients with type 1 diabetes show altered phagocytosis capacity correlating with disease evolution

S. Rodriguez-Fernandez, M. Murillo, D. Perna-Barrull, A. Villalba, D. Maspoch, J. Bel, M. Vives-Pi.

Diabetologia, 2019, 62, S224 - S224

[Full text]

141. Highly strained, radially π-conjugated porphyrinylene nanohoops

Y. Xu, S. Gsänger, M. Minameyer, I. Imaz, D. Maspoch, O. Shyshov, F. Schwer, X. Ribas, T. Drewello, B. Meyer, M. K. von Delius

J. Am. Chem. Soc., 2019, 141, 18500-18507.

[Full text]

140. Development and validation of a novel high performance liquid chromatography method for the simultaneous quantification of co-enzyme Q10, phosphatidylserine and Vitamin C from a cutting edge liposomal vehiculization

M. Ruiz-Garcia, P. Pérez-Lozano, M. Cano-Sarabia, S. Garcia-Jimeno, J. M. Suñé-Negrea, D. Maspoch, E. García-Montoya

ACS Omega, 2019, 4, 19710-19715.

[Full text]

139. Colloidal metal-organic framework particles: the pioneering case of ZIF-8

J. Troyano, A. Carné-Sánchez, C. Avci, I. Imaz, D. Maspoch

Chem. Soc. Rev., 2019, 48, 5534-5546, Journal Cover

[Full text]

138. Phase transfer of rhodium(II)-based metal-organic polyhedra bearing coordinatively-bound cargo enables molecular separation

T. Grancha, A. Carné-Sánchez, L. Hernández-López, J. Albalad, I. Imaz, J. Juanhuix, D. Maspoch

J. Am. Chem. Soc., 2019, 141, 18349-18355.

[Full text]

137. Geometry mismatch and reticular chemistry: strategies to assemble metal-organic frameworks with non-default topologies

V. Guillerm, D. Maspoch

J. Am. Chem. Soc., 2019, 141, 16517-16538.

[Full text]

136. Protection strategies for directionally-controlled synthesis of previously inaccessible Metal-Organic Polyhedra (MOPs): the cases of carboxylate- and amino-functionalized Rh(II)-MOPs

J. Albalad, A. Carné-Sánchez, T. Grancha, L. Hernández-López, D. Maspoch

Chem. Commun., 2019, 55, 12785-12788.

[Full text]

135. The imine-based COF TpPa-1 as an efficient cooling adsorbent that can be regenerated by heat or light

J. Pérez-Carvajal, G. Boix, I. Imaz, D. Maspoch

Adv. Energy Mater., 2019, 9, 1901535.

[Full text]

134. Switching acidic and basic catalysis through supramolecular functionalization in a porous 3D covalent imine-based material

J. Luis-Barrera, R. Cano Monserrat, G. Imani Shakibaei , J. Heras-Domingo, J. Perez-Carvajal , I. Imaz, X. Solans-Monfort, D. Maspoch, J. Aleman, R. Mas Balleste

Catal. Sci. Technol., 2019, 9, 6007-6014.

[Full text]

133. Template-free, Surfactant-Mediated Orientation of Self-Assembled Supercrystals of Metal-Organic Framework Particles

C. Avci, Y. Liu, J.A. Pariente, A. Blanco, C. Lopez, I. Imaz, D. Maspoch

Small., 2019, 15, 1902520.

[Full text]

132. Tuning the supramolecular isomerism of MOF-74 by controlling the synthesis conditions

A. Gheorghe, I. Imaz, J. I. van der Vlugt, D. Maspoch, S. Tanase

Dalton Trans., 2019, 48, 10043-10050.

[Full text]

131. A MOF@COF composite with enhanced uptake through interfacial pore generation

L. Garzón-Tovar, J. Pérez-Carvajal, A. Yazdi, J. Hernández-Muñoz, P. Tarazona, I. Imaz, F. Zamora, D. Maspoch

Angew. Chem. Int. Ed., 2019, 58, 9512-9516.

[Full text]

130. Peripheral administration of human recombinant ApoJ/clusterin modulates brain beta-amyloid levels in APP23 mice

S. Fernández de Retana, P. Marazuela, M. Solé, G. Colell, A. Bonaterra, J.L. Sánchez-Quesada, J. Montaner, D. Maspoch, M. Cano-Sarabia, M. Hernández-Guillamon

Alzheimers Res.Ther., 2019, 11, 42.

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129. Programmable Self-Assembling 3D Architectures Generated by Patterning of Swellable MOF-based Composite Films

J. Troyano, A. Carné-Sánchez, D. Maspoch

Adv. Mater., 2019, 31, 1808235.

[Full text]

128. A Coordinative Solubilizer Method to Fabricate Soft Porous Materials from Insoluble Metal-Organic Polyhedra

A. Carné-Sánchez, G.A. Craig, P. Larpent, V. Guillerm, K. Urayama, D. Maspoch, S. Furukawa

Angew. Chem. Int. Ed., 2019, 58, 6347-6350.

[Full text]

127. Biodistribution of liposome-encapsulated bacteriophages and their transcytosis during oral phage therapy

J. Otero, A. García, M. Cano-Sarabia, D. Maspoch, R. Marcos, P. Cortés, M. Llagostera

Front. Microbiol., 2019, 10, 689.

[Full text]

126. Postsynthetic Covalent and Coordination Functionalization of Rhodium(II)-Based Metal–Organic Polyhedra

A. Carné-Sánchez, J. Albalad, T. Grancha, I. Imaz, J. Juanhuix, P. Larpent, S. Furukawa, D. Maspoch

J. Am. Chem. Soc., 2019, 141, 4094-4102.

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125. Size-selective encapsulation of C60 and C60 derivatives within an adaptable naphthalene-based tetragonal prismatic supramolecular nanocapsule

C. Garcia -Simón, A. Monferrer, M. Garcia-Borràs, I. Imaz, D. Maspoch, M. Costas, X. Ribas

Chem. Commun., 2019, 55, 798-801.

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124. Post-Synthetic Selective Ligand Cleavage by Solid-Gas Phase Ozonolysis Fuses Micropores into Mesopores in Metal-Organic Frameworks

V. Guillerm, H. Xu, J. Albalad, I. Imaz, D. Maspoch

J. Am. Chem. Soc., 2018, 140, 15022-15030.

[Full text]

123. A Self‐Folding Polymer Film Based on Swelling Metal‐Organic Frameworks

J. Troyano, A. Carné-Sánchez, J. Pérez-Carvajal, L. León-Reina, I. Imaz, A. Cabeza, D. Maspoch

Angew. Chem. Int. Ed., 2018, 57, 15420-15424.

[Full text]

122. Metal Acetylacetonates as a Source of Metals for Aqueous Synthesis of Metal–Organic Frameworks

C. Avci-Camur, J. Perez-Carvajal, I. Imaz, D. Maspoch

ACS Sustainable Chem. Eng., 2018, 6, 14554-14560.

[Full text]

121. Zigzag Ligands for Transversal Design in Reticular Chemistry: Unveiling New Structural Opportunities for Metal-Organic Frameworks

V. Guillerm, T. Grancha, I. Imaz, J. Juanhuix, D. Maspoch

J. Am. Chem. Soc., 2018, 140 (32), 10153–10157.

[Full text]

120. Squaramide‐IRMOF‐16 Analogue for Catalysis of Solvent‐Free, Epoxide Ring‐Opening Tandem and Multicomponent Reactions

C. Vignatti, J. Luis-Barrera, V. Guillerm, I. Imaz, R. Mas-Ballesté, J. Alemán, D. Maspoch

ChemCatChem, 2018, 10, 3995-3998.

[Full text]

119. Sequential Deconstruction-Reconstruction of Metal-Organic Frameworks: an Alternative Strategy for Synthesizing (Multi)-Layered ZIF Composites

C. Avci, A. Yazdi, M. Tarres, E. Bernoud, N.G. Bastús, V.F. Puntes, I. Imaz, X. Ribas, D. Maspoch

ACS Appl. Mater. Interfaces , 2018, 10, 23952-23960.

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118. Purification of Uranium‐based Endohedral Metallofullerenes (EMFs) by Selective Supramolecular Encapsulation and Release

C. Fuertes-Espinosa, A. Gómez-Torres, R. Morales-Martínez, A. Rodríguez-Fortea, C. García-Simón, F. Gándara, I. Imaz, J. Juanhuix, D. Maspoch, J. M. Poblet, L. Echegoyen, X. Ribas

Angew. Chem. Int. Ed., 2018, 57, 11294-11299.

[Full text]

117. A CO2 Optical Sensor based on Self-Assembled Metal-Organic Framework Nanoparticles

B. Chocarro-Ruiz,  J. Perez-Carvajal,  C. Avci,  O. Calvo-Lozano,  M. Isabel Alonso,  D. Maspoch, L.M. Lechuga 

J. Mater. Chem. A, 2018, 6, 13171.

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116. Boosting Self‐Assembly Diversity in the Solid‐State by Chiral-non‐Chiral Zn(II)‐Porphyrin Crystallization

W. Qian, A. González-Campo, A. Pérez-Rodríguez, S. Rodríguez-Hermida, I. Imaz, K. Wurst, D. Maspoch, E. Ruiz, C. Ocal, E. Barrena, D.B. Amabilino, N.Aliaga-Alcalde

Chem. Eur. J., 2018, 24, 12950-12960.

[Full text]

115. The photothermal effect in MOFs: covalent post-synthetic modification of MOFs mediated by UV-Vis light under solvent-free conditions

J. Espín, L. Garzón-Tovar, G. Boix i Soler, I. Imaz, D. Maspoch

Chem. Commun. 2018, 4184-4187.

[Full text]

114. Single-crystal-to-single-crystal post-synthetic modification of a Metal-Organic Framework via ozonolysis.

J. Albalad, H. Xu, F. Gándara, M. Haouas, C. Martineau-Corcos, R. Mas-Ballesté, S. Barnett, J. Juanhuix, I. Imaz, D. Maspoch

J. Am. Chem. Soc., 2018, 140, 2028−2031.

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113. Photothermal activation of Metal-Organic Frameworks using a UV-Vis light source.

J. Espín, L. Garzón-Tovar, A. Carné-Sánchez, I. Imaz, D. Maspoch

ACS Appl. Mater. Inter. 2018, 10, 9555−9562.

[Full text]

112. Phosphatidylserine-liposomes promote tolerogenic features on dendritic cells in human type 1 diabetes by apoptotic mimicry.

S. Rodriguez-Fernandez, I. Pujol-Autonell, F. Brianso, D. Perna-Barrull, M. Cano-Sarabia, S. Garcia-Jimeno, A. Villalba, A. Sanchez, E. Aguilera, F. Vazquez, J. Verdaguer, D. Maspoch, M. Vives-Pi

Front. Immunol. 2018, 9, 253.

[Full text]

111. Aqueous production of spherical Zr-MOF beads via continuous-flow spray-drying.

C. Avci-Camur, J. Troyano, J. Pérez-Carvajal, A. Legrand, D. Farrusseng, I. Imaz, D. Maspoch

Green Chem., 2018, 20, 873.

[Full text]

110. Self-assembly of polyhedral Metal-Organic Framework particles into three-dimensional ordered superstructures.

C. Avci, I. Imaz, A. Carné-Sánchez, J. A. Pariente, N. Tasios, J. Pérez-Carvajal, M. I. Alonso, A. Blanco, M. Dijkstra, C. López, D. Maspoch

Nature Chem., 2018, 10, 78-84.

[Full text]

109. Reversible thermochromic polymeric thin-films made of ultrathin two-dimensional crystals of coordination polymers based on copper(I)-thiophenolates.

J. Troyano, O. Castillo, J. L. Martínez, V. Fernández-Moreira, Y. Ballesteros, D. Maspoch, F. Zamora, S. Delgado

Adv. Funct. Mat., 2018, 28, 1704040.

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108. Characterization of ApoJ-reconstituted high-density lipoprotein (rHDL) nanodisc for the potential treatment of cerebral β-amyloidosis.

S. Fernández-de-Retana, M. Cano-Sarabia, P. Marazuela, J. L. Sánchez-Quesada, A. Garcia-Leon, A. Montañola, J. Montaner, D. Maspoch, M. Hernández-Guillamon

Sci. Rep., 2017, 7, 14637.

[Full text]

107. Tuning the endocytosis mechanism of Zr-based MOFs through linker functionalisation.

C. Orellana-Tavra, S. Haddad, R. J. Marshall, I. Abanades Lazaro, G. Boix, I. Imaz, D. Maspoch, R. S. Forgan, and D. Fairen-Jimenez

ACS Appl. Mater. Inter. 2017, 9, 35516−35525.

[Full text]

106. Spray drying for making covalent chemistry II: synthesis of covalent−organic framework superstructures and related composites.

L. Garzón-Tovar, C. Avci-Camur, D. Rodríguez-San-Miguel, I. Imaz, F. Zamora, D. Maspoch

Chem. Commun. 2017, 53, 11372-11375.

[Full text]

105. Leucine zipper motif inspiration: a two-dimensional leucine Velcro-like array in peptide coordination polymers generates hydrophobicity.

S. Rodríguez-Hermida, E. Evangelio, M. Rubio-Martínez, I. Imaz, A. Verdaguer, J. Juanhuix, D. Maspoch

Dalton T. 2017, 46, 11166–11170.

[Full text]

104. Core-shell Au/CeO2 nanoparticles supported in UiO-66 beads exhibiting full CO conversion at 100 ˚C.

A. Yazdi, A. Abo Markeb, L. Garzón-Tovar, J. Patarroyo, J. Moral-Vico, A. Alonso, A. Sánchez, N. Bastus, I. Imaz, X. Font, V. Puntes, D. Maspoch

J. Mater. Chem. A 2017, 5, 13966–13970.

[Full text]

103. Confining functional nanoparticles into colloidal imine-based COF spheres by a sequential encapsulation-crystallization method.

D. Rodríguez-San-Miguel, A. Yazdi, V. Guillerm, J. Pérez-Carvajal, V. Puntes, D. Maspoch, F. Zamora

Chem. Eur. J. 2017, 23, 8623 – 8627.

[Full text]

102. Systematic study of the impact of MOF densification into tablets on textural and mechanical properties.

J. Dhainaut, C. Avci-Camur, J. Troyano, A. Legrand, J. Canivet, I. Imaz, D. Maspoch, H. Reinsch, D. Farrusseng

CrystEngComm 2017, 19, 4211–4218.

[Full text]

101. New synthetic routes towards MOF production at scale.

M. Rubio-Martinez, C. Avci-Camur, A. Thorton, I. Imaz, D. Maspoch, M. R. Hill

Chem. Soc. Rev. 2017, 46, 3453-3480.

[Full text]

100. Validation of liposome-based immunotherapy against autoimmune diseases: therapeutic effect on multiple sclerosis Liposome-based immunotherapy for multiple sclerosis.

I. Pujol-Autonell, M. J. Mansilla, S. Rodriguez-Fernandez, J. Navarro-Barriuso, A. Rius, R. M. Ampudia, D. Perna, M. Cano-Sarabia, E. Martínez-Cáceres, D. Maspoch, M. Vives-Pi

Nano: Nano., Bio. and Med., 2017, 12 (11), 1234-1242.

[Full text]

99. Continuous one-step synthesis of porous M-XF6-based Metal-Organic and hydrogen-bonded Frameworks.

V. Guillerm, L.C. Garzón-Tovar, A. Yazdi, I. Imaz, J. Juanhuix, D. Maspoch

Chem. Eur. J. 2017, 23, 6829 – 6835.

[Full text]

98. Composite salt in porous Metal-Organic Frameworks for adsorption heat transformation.

L. Garzón-Tovar, J. Pérez-Carvajal, I. Imaz, D. Maspoch

Adv. Funct. Mat. 2017, 1606424.

[Full text]

97. Microencapsulation with alginate/CaCO3: A strategy for improved phage therapy

J. Colom, M. Cano-Sarabia, J. Otero, J. Aríñez-Soriano, P. Cortés, D. Maspoch and M. Llagostera

Sci. Rep. 2017, 7, 41441.

[Full text]

96. Spray Drying for making covalent chemistry: postsynthetic modification of Metal–Organic Frameworks

L. Garzón-Tovar, S. Rodríguez-Hermida, I. Imaz and D. Maspoch

J. Am. Chem. Soc. 2017, 139(2), 897-903.

[Full text]

95. Carborane bis-pyridylalcohols as linkers for coordination polymers: synthesis, crystal structures and guest-framework dependent mechanical properties

M.Y. Tsang, S. Rodríguez-Hermida, K. C. Stylianou, F. Tan, D. Negi, F. Teixidor, C. Viñas, D. Choquesillo-Lazarte, C. Verdugo-Escamilla, M. Guerrero, J. Sort, J. Juanhuix, D. Maspoch and J.G. Planas

Cryst. Growth Des. 2017, 17(2), 846-857.

[Full text]


94. Switchable surface hydrophobicity-hydrophilicity of a Metal-Organic Framework

S. Rodríguez-Hermida, M.Y. Tsang, C. Vignatti, K.C. Stylianou, V. Guillerm, J. Pérez-Carvajal, F. Teixidor, C. Viñas, D. Choquesillo-Lazarte, C. Verdugo-Escamilla, I. Peral, J. Juanhuix, A. Verdaguer, I. Imaz, D. Maspoch and J.G. Planas

Angew. Chem. Int. Ed. 2016, 55(52), 16049-16053.

[Full text]

93. The influence of the MOF shell thickness in the catalytic performance of composites made of inorganic (hollow) nanoparticles encapsulated into MOFs

A. Yazdi, F. Merkoci, N. Bastus, I. Imaz, V. Puntes and D. Maspoch

Catal. Sci. Technol. 2016, 6, 8388-8391

[Full text]

92. Hetero-bimetallic paddlewheel clusters in coordination polymers formed by a water-induced single-crystal-to-single-crystal transformation

J. Albalad, J. Ariñez-Soriano, J. Vidal-Gancedo, V. Lloveras, J. Juanhuix, I. Imaz, N. Aliaga-Alcalde and D. Maspoch

Chem. Commun. 2016, 52(91), 13397-13400.

[Full text]

91. A first cyclodextrin-transition metal coordination polymer

H. Xu, S. Rodríguez-Hermida, J. Pérez-Carvajal, J. Juanhuix, I. Imaz and D. Maspoch

Cryst. Growth Des. 2016, 16(10), 5598-5602.

[Full text]

90. Influence of the amide groups in the CO2/N2 selectivity of a series of isoreticular, interpenetrated metal-organic frameworks

V. Safarifard, S. Rodríguez-Hermida, V. Guillerm, I. Imaz, M. Bigdeli, A. A. Tehrani, J. Juanhuix, A. Morsali, M. E. Casco, J. Silvestre-Albero, E. V. Ramos-Fernandez and D. Maspoch

Cryst. Growth Des. 2016, 16(10), 6016-6023.

[Full text]

89. A spray-drying continuous-flow method for simultaneous synthesis and shaping of microspherical high nuclearity MOF beads

L. Garzón-Tovar, M. Cano-Sarabia, A. Carné-Sánchez, C. Carbonell, I. Imaz and D. Maspoch

React. Chem. Eng. 2016, 1, 533-539.

[Full text]

88. pH-Responsive relaxometric behaviour of boordination polymer nanoparticles made of a stable macrocyclic gadolinium chelate

J. Aríñez-Soriano, J. Albalad, A. Carné-Sánchez, C. S. Bonnet, F. Busqué, J. Lorenzo, J. Juanhuix, M. W. Terban, I. Imaz, E. Tóth and D. Maspoch

Chem. Eur. J. 2016, 22(37), 13162-13170.

[Full text]

87. Narrowing the zero-field tunneling resonance by decreasing the crystal symmetry of Mn12 acetate

J. Espín, R. Zarzuela, N. Statuto, J. Juanhuix, D. Maspoch, I. Imaz, E. Chudnovsky and J. Tejada

J. Am. Chem. Soc. 2016, 138(29), 9065-9068.

[Full text]

86. Freezing the nonclassical crystal growth of a coordination polymer using controlled dynamic gradients

M. Rubio-Martinez, I. Imaz, N. Domingo, A. Abrishamkar, T. Sotto Mayor, R. M. Rossi, C. Carbonell, A. J. deMello, D. B. Amabilino, D. Maspoch, J. Puigmartí-Luis

Adv. Mater. 2016, 28(37), 8150-8155.

85. Single-crystal and humidity-controlled powder diffraction study of the breathing effect in a metal–organic framework upon water adsorption/desorption

J. Aríñez-Soriano, J. Albalad, C. Vila-Parrondo, J. Pérez-Carvajal, S. Rodríguez-Hermida, A. Cabeza, J. Juanhuix, I. Imaz and D. Maspoch. Chem. Commun. 2016, 52(45), 7229-7232.

Chem. Commun. 2016, 52(45), 7229-7232.

[Full text]

84. Charge effect of a liposomal delivery system encapsulating simvastatin to treat experimental ischemic stroke in rats

M. Campos-Martorell, M. Cano-Sarabia, A. Simats, M. Hernández-Guillamon, A. Rosell, D. Maspoch and J. Montaner

Int J Nanomedicine 2016, 11, 3035-3048.

[Full text]

83. Enhanced spin tunneling in a molecular magnet mixed with a superconductor

J. Tejada, R. Zarzuela, A. García-Santiago, I. Imaz, J. Espín, D. Maspoch and E. M. Chudnovsky

J Supercond Nov Magn 2016, 29(5), 1133-1137.

[Full text]

82. Introducing asymmetric functionality into MOFs via the generation of metallic Janus MOF particles

A. Ayala, C. Carbonell, I. Imaz and D. Maspoch

Chem. Commun. 2016, 52, 5096-5099.

[Full text]

81. Two-step synthesis of heterometallic coordination polymers using a polyazamacrocyclic linker

J. Aríñez-Soriano, J. Albalad, J. Pérez-Carvajal, I. Imaz, F. Busqué, J. Juanhuix and D. Maspoch

CrystEngComm 2016, 18, 4196-4204.

[Full text]

80. Application of metallic and metal oxide nanoparticles@MOFs

P. Falcaro, R. Ricco, A. Yazdi, I. Imaz, S. Furukawa, D. Maspoch, R. Ameloot, J. D. Evans and C. J. Doonan

Coord. Chem. Rev. 2016, 307(2), 237-254.

[Full text]


79. Post-synthetic anisotropic wet-chemical etching of colloidal sodalite ZIF crystals

C. Avci, J. Ariñez-Soriano, A. Carné-Sánchez, V. Guillerm, C. Carbonell, I. Imaz, D. Maspoch.

Angew. Chem. Int. Ed. 2015, 54(48), 14417-14421.

[Full text]

78. Biomimetic replication of microscopic Metal-Organic Framework patterns using printed protein patterns

K. Liang, C. Carbonell, M. J. Styles, R. Ricco, J. Cui, J. J. Richardson, D. Maspoch, F. Caruso, P. Falcaro

Adv. Mater. 2015, 27(45), 7293-7298.

[Full text]

77. Optimised room temperature, water-based synthesis of CPO-27-M metal-organic frameworks with high Space-Time Yields

L. Garzón-Tovar, A. Carné-Sánchez, C. Carbonell, I. Imaz, D. Maspoch

J. Mater. Chem. A 2015, 3(41), 20819-20826.

[Full text]

76. Healing damaged coatings using friction-sensitive hybrid microcapsules

S. García-Jimeno, M. Cano-Sarabia, N. Mejias, V. Navarro, A. Belen Frances, D. Maspoch Journal of Materials

J. Mater. Chem. A 2015, 3(35), 17966-17970.

[Full text]

75. Two new adenine-based Co(II) coordination polymers: synthesis, crystal structure, coordination modes and reversible hydrochromic behavior

I. Burneo, K. C. Stylianou, S. Rodríguez-Hermida, J. Juanhuix, X. Fontrodona, I. Imaz, D. Maspoch

Cryst. Growth Des. 2015, 15(7), 3182-3189.

[Full text]

74. Engineering homochiral MOFs by spatially separating 1D chiral metal-peptide ladders: tuning the pore size for enantioselective adsorption

K. C. Stylianou, L. Gómez, I. Imaz, C. Verdugo-Escamilla, X. Ribas, D. Maspoch

Chem. Eur. J. 2015, 21(28), 9964-9969.

[Full text]

73. Direct on-surface patterning of a crystalline laminar covalent organic framework synthesized at room temperature

A. de la Peña Ruigómez, D. Rodríguez-San-Miguel; K. C. Stylianou, M. Cavallini, D. Gentili, F. Liscio, S. Milita, O.M. Roscioni, C. Carbonell, D. Maspoch, R. Mas-Ballesté, J.L. Segura, F. Zamora

Chem. Eur. J. 2015, 21(30), 10666-10670.

[Full text]

72. Liposome-encapsulated bacteriophages for enhanced oral phage therapy against Salmonella

J. Colom, M. Cano-Sarabia, J. Otero, P. Cortés, D. Maspoch, M. Llagostera

Appl. Environ. Microbiol. 2015, 81(14), 4841-4849.

[Full text]

71. Use of autoantigen-loaded phosphatidylserine-liposomes to arrest autoimmunity in type 1 diabetes

I. Pujol-Autonell, A. Serracant, M. Cano-Sarabia, R. M. Ampudia, A. Sanchez, M. Puig-Domingo, D. Maspoch, J. Verdaguer, M. Vives-Pi

PLosONE 2015, 10(6), e0127057.

[Full text]

70. Lanthanide–organic framework nanothermometers prepared by spray‐drying

Z. Wang, D. Ananias, A. Carné-Sánchez, C. D. S. Brites, I. Imaz, D. Maspoch, J. Rocha, L. D. Carlos

Adv. Funct. Mater. 2015, 25(19), 2824-2830.

[Full text]

69. Synthesis, culture medium stability, and in vitro and in vivo zebrafish embryo toxicity of Metal-Organic Framework nanoparticles

À. Ruyra, A. Yazdi, J. Espín, A. Carné-Sánchez, N. Roher, J. Lorenzo, I. Imaz, D. Maspoch

Chem. Eur. J. 2015, 21, 2508-2518.

[Full text]

68. Protecting Metal-Organic Framework crystals from hydrolytic degradation by spray-dry encapsulating them into polystyrene microspheres

A. Carné-Sánchez, K. C. Stylianou, C. Carbonell, M. Naderi, I. Imaz, D. Maspoch

Adv. Mater. 2015, 27, 869-873.

[Full text]

67. Resonant spin tunneling in randomly oriented nanospheres of Mn12 acetate

S. Lendínez, R. Zarzuela, J. Tejada, M. W. Terban, S. J. L. Billinge, J. Espín, I. Imaz, D. Maspoch, E. M. Chudnovsky

Phys. Rev. B 2015, 91, 024404.

[Full text]


66. The influence of the enantiomeric ratio of an organic ligand on the structure and chirality of Metal-Organic Frameworks

I. Burneo, K. C. Stylianou, I. Imaz, D. Maspoch

Chem. Commun. 2014, 50 (89), 13829-13832.

[Full text]

65. Sponge-like molecular cage for purification of fullerenes

C. García-Simón, M. Garcia-Borràs, L. Gómez, T. Parella, S. Osuna, J. Juanhuix, I. Imaz, D. Maspoch, M. Costas, X. Ribas

Nature Commun. 2014, 5, 5557.

[Full text]

64. Targeting and stimulation of the zebrafish (Danio rerio) innate immune system with LPS/dsRNA-loaded nanoliposomes

À. Ruyra, M. Cano-Sarabia, P. García-Valtanen, D. Yero, I. Gibert, S. A. Mackenzie, A. Estepa, D. Maspoch, N. Roher.

Vaccine 2014, 30, 3955-3962.

[Full text]

63. Selective CO2 capture in metal–organic frameworks with azine-functionalized pores generated by mechanosynthesis

M. Y. Masoomi, K. C. Stylianou, A. Morsali, P. Retailleau, D. Maspoch

Cryst. Growth Des. 2014, 14 (5) 2092-2096.

[Full text]

62. Metal–Organic Frameworks: from molecules/metal ions to crystals to superstructures

A. Carné-Sánchez, I. Imaz, K. C. Stylianou, D. Maspoch

Chem. Eur. J. 2014, 20, 5192-5201.

[Full text]

61. Localized, stepwise template growth of functional nanowires from an amino acid-supported framework in a microfluidic chip

J. Puigmartí-Luis, M. Rubio-Martínez, I. Imaz, B. Z. Cvetković, Ll. Abad , A. Pérez del Pino, D. Maspoch, David B. Amabilino

ACS Nano 2014, 8, 818–826.

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60. Relaxometry studies of a highly stable nanoscale metal−organic framework made of Cu(II), Gd(III), and the macrocyclic DOTP

A. Carné-Sánchez, C. S. Bonnet, I. Imaz, J. Lorenzo, É. Toth, D. Maspoch

J. Am. Chem. Soc. 2013, 135, 17711–17714.

[Full text]

59. A novel liposome-based nanocarrier loaded with an LPS-dsRNA cocktail for fish innate immune system stimulation

A. Ruyra, M. Cano-Sarabia, S. A. MacKenzie, D. Maspoch, N. Roher

Plos One 2013, 8, 10, e76338.

[Full text]

58. Femtolitre chemistry assisted by microfluidic pen lithography

C. Carbonell, K. C. Stylianou, J. Hernando, E. Evangelio, S. A. Barnett, S. Nettikadan, I. Imaz, D. Maspoch

Nature Commun. 2013, 4, 2173.

[Full text]

57. "Dual-Template" synthesis of one-dimensional conductive nanoparticle superstructures from coordination metal–peptide polymer crystals

M. Rubio-Martínez, J. Puigmartí-Luis, I. Imaz, P. S. Dittrich, D. Maspoch

Small 2013, 9, 4160–4167.

[Full text]

56. A spray-drying strategy for synthesis of nanoscale metal–organic frameworks and their assembly into hollow superstructures

A. Carné-Sánchez, I. Imaz, M. Cano-Sarabia, D. Maspoch

Nature Chem. 2013, 5, 203-211.

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55. Self-assembled tetragonal prismatic molecular cage highly selective for anionic π guests

C. García-Simón, M. Garcia-Borràs, L. Gómez, I. Garcia-Bosch, S. Osuna, M. Swart, J.M. Luis, C. Rovira, M. Almeida, I. Imaz, D. Maspoch, M. Costas, X. Ribas

Chem. Eur. J. 2013, 19, 1445-1456.

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54. Three-dimensional porous metal-radical frameworks based on triphenylmethyl radicals.

A. Dactu, N. Roques, V. Jubera, D. Maspoch, X. Fontrodona, K. Wurst, I. Imaz, G. Mouchaham, J.-P. Sutter, C. Rovira, J. Veciana

Chem. Eur. J. 2012, 18, 152-162.

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53. Metal–biomolecule frameworks (MBioFs)

I. Imaz, M. Rubio-Martínez, J.An, I. Solé-Font, N. L. Rosi, D. Maspoch

Chem. Commun. 2011, 47, 7287-7302. Feature Article.

[Full text]

52. Multiplexed arrays of chemosensors by parallel dip-pen nanolithography

A. Martínez-Otero, P. González-Monje, D. Maspoch, J. Hernando, D. Ruiz-Molina

Chem. Comm. 2011, 47, 6864-6866.

[Full text]

51. Coordination polymer nanofibers generated by microfluidic synthesis

J. Puigmartí-Luis, M. Rubio-Martínez, U. Hartfelder, I. Imaz, D. Maspoch, P. S. Dittrich

J. Am. Chem. Soc. 2011, 133 (12), 4216-4219.

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50. Three-dimensional open-frameworks based on Ln(III) ions and open/closed-shell PTM ligands: synthesis, structure, luminiscence and magnetic properties

A. Dactu, N. Roques, V. Jubera, I. Imaz, D. Maspoch, J.-P. Sutter, C. Rovira, J. Veciana

Chem. Eur. J. 2011, 17 (13), 3644 - 3656.

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49. Single-crystal metal-organic frameworks arrays

C. Carbonell, I. Imaz, D. Maspoch

J. Am. Chem. Soc. 2011, 133, 2144-2147

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48. Controlling the length and location of in situ formed nanowires by means of microfluidic tools

P. Kuhn, J. Puigmartí-Luis, I. Imaz, D. Maspoch, P. S. Dittrich

Lab Chip 2011, 11, 753-757

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47. Nanoscale metal-organic materials

A. Carné, C. Carbonell, I. Imaz, D. Maspoch.

Chem. Soc. Rev. 2011, 40, 291 - 305. During December 2010, this article has been amongst the TOP TEN ACCESSED ARTICLES from the online version of ChemSocRev.

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46. Coordination polymer particles as potential drug delivery systems

I. Imaz, M. Rubio-Martínez, L. García-Fernández, F. García, D. Ruiz-Molina, J. Hernando, V. Puntes, D. Maspoch

Chem. Commun. 2010, 4737 - 4739.

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45. Metal-radical chains based on polychlorotriphenylmethyl radicals: synthesis, structure and magnetic properties

N. Roques, N. Domingo, D. Maspoch, K. Wurst, C. Rovira, J. Tejada, D. Ruiz-Molina, J. Veciana.

Inorg. Chem. 2010, 49, 3482-3488

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44. Nanoscale positioning of inorganic nanoparticles using biological ferritin arrays fabricated by Dip-Pen Nanolithography

E. Bellido, R. de Miguel, J. Sessé, D. Ruiz-Molina, I. Lostao, D. Maspoch

Scanning 2010, Vol 32, 35–41. Invited manuscript to the issue “Advancing DPN”.

[Full text]

43. Controlling the number of proteins with Dip-Pen Nanolithography

E. Bellido, R. de Miguel, D. Ruiz-Molina, I. Lostao, D. Maspoch

Adv. Mater. 2010, 22, 352-355.

[Full text]


42. Amino acid-based metal-organic nanofibers

I. Imaz, M. Rubio-Martínez, W. J. Saletra, D. Amabilino, D. Maspoch,

J. Am. Chem. Soc. 2009, 131, 18222-18223.  

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41. Metal-organic spheres as functional systems for guest encapsulation

I. Imaz, J. Hernando, D. Ruiz-Molina, D. Maspoch, Angew. Chem. Int. Ed. 2009, 48, 2325-2329 [Full text] 

Angew. Chem. Int. Ed. 2009, 48, 2325-2329, Journal Cover.

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Highlighted by Prof. Neil R. Champness in Angew. Chem. Int. Ed.; highlighted in different media: ADN journal, “el diari de Sabadell” journal, Europa Press, etc.


40. Superparamagnetic sub-5 nm Fe@C Nanoparticles: isolation, magnetic properties and directed assembly

Y. Wang, W. Wei, D. Maspoch, J. Wu, V. Dravid, C. A. Mirkin

Nano Lett. 2008, 8, 3761-3765.

[Full text]

39. pH-Responsive fluorescent nanoarrays fabricated by direct-write parallel Dip-Pen Nanolithography

A. Martínez-Otero, J. Hernando, D. Ruiz-Molina, D. Maspoch

Small 2008, 4, 2131-2135.

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38. Magnetic behaviour of Mn12 single molecule magnet nanospheres

C. Carbonera, I. Imaz, D. Maspoch, D. Ruiz-Molina, F. Luis

Inorg. Chim. Acta 2008, 361, 3951-3956.

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37. A three-dimensional lanthanide-organic radical open-framework

N. Roques, D. Maspoch, I. Imaz, A. Datcu, J.-P. Sutter, C. Rovira, J. Veciana

Chem. Commun. 2008, 3160-3162.

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36. Synthesis, X-ray structure and reactivity of a sterically protected azobisphenol ligand and its Co(III) complex: on the quest for new multifunctional active ligands.

E. Evangelio, J. Saiz, D. Maspoch, K. Wurst, F. Busqué, D. Ruiz-Molina

Eur. Journ. Inorg. Chem. 2008, 2278-2285

35. Electrically biased nanolithography with KOH coated AFM tips. NanoLetters 2008, 8, 1451-1455

J.-W. Jang, R. Sanedrin, D. Maspoch, S. Hwang, T. Fujigaya, Y. M. Jeon, R. Vega, X. Chen, C. A. Mirkin

Nano Lett. 2008, 8, 1451-1455

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34. Valence tautomeric metal-organic nanoparticles

I. Imaz, D. Maspoch, C. Rodríguez-Blanco, J. M. Pérez-Falcón, J. Campo, D. Ruiz-Molina

Angew. Chem. Int. Ed. 2008, 47, 1857-1860.

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33. Single-molecule magnet behaviour in metal-organic nanoparticles generated by direct precipitation of Mn12 O12 clusters

I. Imaz, F. Luis, C. Carbonera, D. Ruiz-Molina, D. Maspoch

Chem. Commun. 2008, 1202-1204.

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32. A hexacarboxylic open-shell building block: synthesis. structure and magnetism of a three-dimensional metal-radical framework

N. Roques, D. Maspoch, F. Luis, A. Camón, K. Wurst, C. Rovira, D. Ruiz-Molina, J. Veciana

J. Mater. Chem. 2008, 18, 98-108.

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31. Reactivity of superoxide anion radical with a perchlorotriphenylmethyl(trityl) radical

V. K. Kutala, F. A. Villamena, G. Llangovan, D. Maspoch, N. Roques, J. Veciana, C. Rovira, P. Kuppusamy

J. Phys. Chem. B 2008, 112, 158-167.

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30. Monitoring single cell infectivity from virus-particle nanoarrays fabricated by parallel Dip-Pen Nanolithography.

R. A. Vega, C. K.-F. Shen, D. Maspoch, J. Robach, R. A. Lamb, C. A. Mirkin

Small 2007, 3, 1482-1485. Highlighted in Nature Nanotechnology.

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29. Structural and magnetic modulation of a purely organic open-framework by selective guest inclusion

D. Maspoch, N. Domingo, N. Roques, K. Wurst, J. Tejada, C. Rovira, D. Ruiz-Molina, J. Veciana

Chem. Eur. J. 2007, 8153-8163.

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28. Europium (III) complexes derived from carboxylic substituted polychlorotriphenylmethyl radicals

N. Roques, S. Perruchas, D. Maspoch, A. Datcu, K. Wurst, J.-P. Sutter, C. Rovira, J. Veciana

Inorg. Chim. Acta 2007, 360, 3861-3869.

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27. A “molecular eraser” for Dip-Pen Nanolithography

J.-W. Jang, D. Maspoch, T. Fujigaya, C. A. Mirkin

Small 2007, 3, 600-605, Highlighted in Nature Nanotechnology.

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26. First-row transition metal complexes based on a carboxylate polychlorotriphenylmethyl radical: Trends in metal-radical exchange interactions.

D. Maspoch, N. Domingo, D. Ruiz-Molina, K. Wurst, F. Lloret, J. Tejada, C. Rovira, J. Veciana

Inorg. Chem. 2007, 46, 1627-1633.

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25. Rings of single-walled carbon nanotubes: Molecular-template directed assembly and Monte Carlo modelling

S. Zou, D. Maspoch, Y. Wang, C. A. Mirkin, G. C. Schatz

NanoLetters 2007, 7, 276-280.

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24. Self-assembly of carboxylic substituted PTM radicals: from weak ferromagnetic interactions to robust porous magnets

N. Roques, D. Maspoch, A. Datcu, K. Wurst, D. Ruiz-Molina, C. Rovira, J. Veciana

Polyhedron 2007, 26, 1934-1948.

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23. Old materials with new tricks: Multifunctional porous materials

D. Maspoch, D. Ruiz-Molina, J. Veciana

Chem. Soc. Rev. 2007, 36, 770-818.

Chem.Soc.Rev. has recognized this review as within the top 10 articles published in 2007.

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22. Functional antibody arrays through metal ion affinity templates

R. A. Vega, D. Maspoch, C. K.-F. Shen, J. Kakkassary, B. Chan, R. A. Lamb, C. A. Mirkin

ChemBioChem 2006, 7, 1653-1657.

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21. Three-dimensional six-connecting organic building-blocks based on polychlorotriphenylmethane motives: synthesis, self-assembly and magnetic properties

N. Roques, D. Maspoch, D. Ruiz-Molina, K. Wurst, C. Rovira, J. Veciana

Chem. Eur. J. 2006, 12, 9238-9253.

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20. Coordination capabilities of a novel organic polychlorotriphenylmethyl monosulfonate radical

X. Ribas, D. Maspoch, O. Armet, K. Wurst, J. Veciana, C. Rovira

Inorg. Chem. 2006, 45, 5383-5392.

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19. Controlling the shape, orientation and linkage of carbon nanotube features with nano affinity templates

Y. Wang, D. Maspoch, S. Zou, G. C. Schatz, R. E. Smalley, C. A. Mirkin

PNAS 2006, 103, 2026-2031.

Highlighted in Nature Materials and in Materials Today.

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18. Coexistence of ferro- and antiferromagnetic interactions in a metal–organic radical-based (6,3)-helical network with large channels

D. Maspoch, N. Domingo, D. Ruiz-Molina, K. Wurst, J. M. Hernández, G. Vaughan, C. Rovira, F. Lloret, J. Tejada, J. Veciana

Chem. Commun. 2005, 5035-5037.

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17. Hydrogen-bonded self-assemblies in a polychlorotriphenylmethyl radical derivative substituted with six meta-carboxylic acid groups

N. Roques, D. Maspoch, N. Domingo, D. Ruiz-Molina, K. Wurst, J. Tejada, C. Rovira, J. Veciana

Chem. Commun. 2005, 4801-4803.

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16. Nanoarrays of single virus particles.

R. A. Vega, D. Maspoch, K. Salaita, C. A. Mirkin

Angew. Chem. Int. Ed. 2005, 44, 6013-6015.

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15. Spontaneous "phase separation" of patterned binary alkanethiol mixtures

K. Salaita, A. Amarnath, D. Maspoch, T.B. Higgins, C. A. Mirkin

J. Am. Chem. Soc. 2005, 127, 11283-11287.

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14. An unusually stable trinuclear manganese (II) complex bearing bulk carboxylic radical ligands

D. Maspoch, J. Gómez-Segura, N. Domingo, D. Ruiz-Molina, K. Wurst, C. Rovira, J. Tejada, J. Veciana

Inorg. Chem. 2005, 44, 6936-6939.

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13. Carboxylic-substituted polychlorotriphenylmethyl radicals, new organic building-blocks to design nanoporous magnetic molecular materials.

D. Maspoch, N. Domingo, D. Ruiz-Molina, K. Wurst, J. Tejada, C. Rovira, J. Veciana

CR Chim. 2005. 8, 1213-1225.

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12. 2D layered coordination polymer based on an unusual mixed valence Cu(III)/Cu(I)bis-1.2-diselenolene compound

X. Ribas, D. Maspoch, J. Dias, J. Morgado, M. Almeida, K. Wurst, G. Vaughan, J. Veciana, C. Rovira

CrystEngComm 2004, 6, 589-592.

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11. Open-shell channel-like salts formed by the supramolecular assembly of a tricarboxylated perchlorotriphenylmethyl radical and a [Co(bpy)3]2+ cation

D. Maspoch, N. Domingo, D. Ruiz-Molina, G. Vaughan, K. Wurst, J. Tejada, C. Rovira, J. Veciana

CrystEngComm 2004, 6, 573-578.

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10. Magnetic nanoporous coordination polymers

D. Maspoch, D. Ruiz-Molina, J. Veciana

J. Mater. Chem. 2004, 14, 2713-2723, Journal Cover.

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9. A new (63).(69,81) non-interpenetrated paramagnetic network with helical nanochannels based on a tricarboxylic perchlorotriphenylmethyl radical.

D. Maspoch, D. Ruiz-Molina, K. Wurst, C. Rovira, J. Veciana

Chem. Commun. 2004, 1165-1166.

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8. A robust purely organic nanoporous magnet

D. Maspoch, N. Domingo, D. Ruiz-Molina, G. Vaughan, K. Wurst, J. Tejada, C. Rovira, J. Veciana

Angew. Chem. Int. Ed. 2004, 43, 1828-1832.

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7. Synthesis, structural and magnetic properties of a series of copper (II) complexes containing a monocarboxylated perchlorotriphenylmethyl radical as a coordinating open-shell ligand

D. Maspoch, D. Ruiz-Molina, K. Wurst, C. Rovira, J. Veciana

Dalton T. 2004, 1073-1082.

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6. A robust nanocontainer based on a pure organic free radical

D. Maspoch, N. Domingo, D. Ruiz-Molina, K. Wurst, J. Tejada, C. Rovira, J. Veciana

J. Am. Chem. Soc. 2004, 126, 730-731.

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5. EPR characterization of a nanoporous metal-organic framework exhibiting a bulk magnetic ordering

D. Maspoch, J. Vidal-Gancedo, D. Ruiz-Molina, C. Rovira, J. Veciana

J. of Physics and Chemistry of Solids 2004, 65, 819-824.

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4. A nanoporous molecular magnetic with reversible solvent-induced mechanical and magnetic properties

D. Maspoch, D. Ruiz-Molina, K. Wurst, N. Domingo, M. Cavallini, F.

Nat. Mater. 2003, 2, 190-195.

Prof. G. Férey highlighted this article in Nature Materials; highlighted in different media: Nanotechweb, Physicsworld, Stp-Gateway, el Mundo, etc.

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3. Synthesis, X-Ray structure and magnetic properties of an unusual transition Co (II) complex with polychlorotriphenylmethyl radicals

D. Maspoch, D. Ruiz-Molina, K. Wurst, C. Rovira, J. Veciana

Polyhedron 2003, 22, 1929-1934.

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2. A very bulky carboxylic perchlorotriphenylmethyl radicals as a novel ligand for transition metal complexes. A new spin frustrated system

D. Maspoch, D. Ruiz-Molina, K. Wurst, C. Rovira, J. Veciana

Chem. Commun. 2002, 2958-2959.

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1. Radical para-benzoic acid derivates: transmission of ferromagnetic interactions through hydrogen bonds at long distances

D. Maspoch, L. Catala, P. Gerbier, J. Vidal-Gancebo, D. Ruiz-Molina, K. Wurst, C. Rovira, J. Veciana

Chem. Eur. J. 2002, 8, 3635-3645.

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