Zobrazeno 1 - 10
of 17
pro vyhledávání: '"Miriam de J. Velásquez-Hernández"'
Autor:
Génesis Osorio-Toribio, Miriam de J. Velásquez-Hernández, Paulo G.M. Mileo, J. Antonio Zárate, Javier Aguila-Rosas, Gerardo Leyva-Gómez, Roberto Sánchez-Sánchez, Jonathan J. Magaña, Mario Alberto Pérez-Díaz, Isabel Abánades Lázaro, Ross S. Forgan, Guillaume Maurin, Enrique Lima, Ilich A. Ibarra
Publikováno v:
iScience, Vol 23, Iss 6, Pp 101156- (2020)
Summary: The Sc(III) MOF-type MFM-300(Sc) is demonstrated in this study to be stable under physiological conditions (PBS), biocompatible (to human skin cells), and an efficient drug carrier for the long-term controlled release (through human skin) of
Externí odkaz:
https://doaj.org/article/e9c518125b214cc8a38a76d0b0434da7
Autor:
Miriam de J. Velásquez‐Hernández, Mercedes Linares‐Moreau, Lea A. Brandner, Benedetta Marmiroli, Mariano Barella, Guillermo P. Acuna, Simone Dal Zilio, Margot F. K. Verstreken, Dmitry E. Kravchenko, Oliver M. Linder‐Patton, Jack D. Evans, Helmar Wiltsche, Francesco Carraro, Heimo Wolinski, Rob Ameloot, Christian Doonan, Paolo Falcaro
Publikováno v:
Advanced Materials.
Micropatterning crystalline materials with oriented pores is necessary for the fabrication of devices with anisotropic properties. Crystalline and porous metal-organic frameworks (MOFs) are ideal materials as their chemical and structural mutability
Autor:
Tobias Burger, Miriam de J. Velásquez-Hernández, Robert Saf, Sergey M. Borisov, Christian Slugovc
Publikováno v:
Journal of Materials Chemistry C. 10:13262-13267
Probing core–shell and multivariant MOFs of the PCN-224 type prepared from metal-free and metalated porphyrin building blocks with luminescence quenching upon exposure to oxygen reveals oxygen quenching to occur also in the core of the MOF.
Autor:
Miriam de J. Velásquez-Hernández, Mercedes Linares-Moreau, Lea A. Brandner, Benedetta Marmiroli, Mariano Barella, Guillermo P. Acuna, Simone Dal Zilio, Margot F. K. Verstreken, Dmitry E. Kravchenko, Francesco Carraro, Heimo Wolinski, Rob Ameloot, Christian Doonan, Paolo Falcaro
Micropatterning crystalline materials with oriented pores is necessary for the fabrication of devices with anisotropic properties. Crystalline and porous metal-organic frameworks (MOFs) are ideal materials as their chemical and structural mutability
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::5d543a4cc915242687cd23817061bc7d
https://doi.org/10.26434/chemrxiv-2023-nspmt
https://doi.org/10.26434/chemrxiv-2023-nspmt
Autor:
Vojtech Jancik, Mariana L. Díaz-Ramírez, Eva Martínez-Ahumada, Miriam de J. Velásquez-Hernández, Ilich A. Ibarra
Publikováno v:
Chemical Science
MOFs are promising candidates for the capture of toxic gases since their adsorption properties can be tuned as a function of the topology and chemical composition of the pores. Although the main drawback of MOFs is their vulnerability to these highly
Autor:
Patricia Horcajada, Christian J. Doonan, Arpita Poddar, Paolo Falcaro, Pablo Salcedo-Abraira, Miriam de J. Velásquez-Hernández, Heinz Amenitsch, John E. Paderi, Helmar Wiltsche, Glenn D. Prestwich, Weibin Liang, Sarah Winkler, Efwita Astria, Ravi Shukla
Publikováno v:
Chemical Science
Glycosaminoglycans (GAGs) are biomacromolecules necessary for the regulation of different biological functions. In medicine, GAGs are important commercial therapeutics widely used for the treatment of thrombosis, inflammation, osteoarthritis and woun
Autor:
Miriam de J. Velásquez-Hernández, Valeria B. López-Cervantes, Eva Martínez-Ahumada, Min Tu, Uvaldo Hernández-Balderas, Diego Martínez-Otero, Daryl R. Williams, Vladimir Martis, Elí Sánchez-González, Jong-San Chang, Ji Sun Lee, Jorge Balmaseda, Rob Ameloot, Ilich A. Ibarra, Vojtech Jancik
ispartof: CHEMISTRY OF MATERIALS vol:34 issue:2 pages:669-677 status: published
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::198b753bd33a2600785184f8eaa6962d
https://lirias.kuleuven.be/handle/20.500.12942/688988
https://lirias.kuleuven.be/handle/20.500.12942/688988
Autor:
Miriam de J. Velásquez-Hernández, Francesco Carraro, Helmar Wiltsche, Philipp Frühwirt, Mercedes Linares-Moreau, Eduard Stadler, Heinz Amenitsch, Christian J. Doonan, Erich Leitner, Georg Gescheidt, Hartmuth Schröttner, Raffaele Ricco, F. Ted Limpoco, Johannes Rattenberger, Paolo Falcaro
Publikováno v:
CrystEngComm
Understanding the stability of zeolitic imidazolate framework-8 (ZIF-8) under physiological conditions is critical in biotechnology and biomedicine for biosensing, biocatalysis, and drug delivery. The use of ZIF-8 has shown that this metal organic fr
Autor:
Christopher J. Sumby, Francesco Carraro, Paolo Falcaro, Efwita Astria, Christian J. Doonan, Miriam de J. Velásquez-Hernández, Mercedes Linares Moreau
Publikováno v:
Metal-Organic Frameworks in Biomedical and Environmental Field ISBN: 9783030633790
Recent progress has shown that Metal-organic Frameworks (MOFs) can be integrated with biomacromolecules. Depending on the synthesis protocol used, it is possible to control the spatial localization of the biomacromolecules in or on MOF biocomposites.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::1596585dc97540febbf99f68b3565f26
https://doi.org/10.1007/978-3-030-63380-6_12
https://doi.org/10.1007/978-3-030-63380-6_12
Autor:
Roland A. Fischer, Ana Torvisco, Benedetta Marmiroli, Min Tu, Zheng Wang, Max L. Tietze, Joan Teyssandier, Ivo Stassen, Alexander John Cruz, Miriam de J. Velásquez-Hernández, Rob Ameloot, Tom Hauffman, Dmitry E. Kravchenko, Heinz Amenitsch, Paolo Falcaro, Steven De Feyter, Benzheng Xia
Publikováno v:
Nature Materials
Metal–organic frameworks (MOFs) offer disruptive potential in micro- and optoelectronics because of the unique properties of these microporous materials. Nanoscale patterning is a fundamental step in the implementation of MOFs in miniaturized solid
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fbd1842a7b30ffee443758ae225f2bc4
https://zenodo.org/record/4317840
https://zenodo.org/record/4317840