-
Autor
Abylgazina, Leila 1 Bachetzky, Christopher 1 Brunner, Eike 1 Buschbeck, Robin 1 Eng, Lukas M 1 Isaacs, Mark 1 Kaskel, Stefan 1 Maliuta, Mariia 1 Mendt, Matthias 1 More, Yogeshwar D 1 Morgan, David 1 Otyepka, Michal 1 Otyepkova, Eva 1 Pöppl, Andreas 1 Pöschel, Kathrin 1 Rauche, Marcus 1 Schmidt, Johannes 1 Schneemann, Andreas 1 Senkovska, Irena 1 Synytska, Alla 1
-
Pracoviště
Chair of Bioanalytical Chemistry Technische ... 1 Chair of Inorganic Chemistry 1 Technische Un... 1 Department of Chemistry University College L... 1 Department of Engineering Science University... 1 Department of Physical Chemistry Faculty of ... 1 Felix Bloch Institute for Solid State Physic... 1 HarwellXPS Research Complex at Harwell Ruthe... 1 IT4Innovations VŠB Technical University of O... 1 Institute of Applied Physics Technische Univ... 1 Institute of Chemistry Technische Universitä... 1 Leibniz Institute of Polymer Research Dresde... 1 Regional Centre of Advanced Technologies and... 1 School of Chemistry Translational Research H... 1 Würzburg Dresden Cluster of Excellence EXC 2... 1
- Publikační typ
- Kategorie
- Jazyk
- Země
- Časopis/zdroj
- Nejvíce citované
Nejvíce citovaný článek - PubMed ID 23307740
- Abylgazina, Leila
- Senkovska, Irena
- Maliuta, Mariia
- Bachetzky, Christopher
- Rauche, Marcus
- Pöschel, Kathrin
- Schmidt, Johannes
- Isaacs, Mark
- Morgan, David
-
Otyepka, Michal
Autor Otyepka, Michal ORCID Regional Centre of Advanced Technologies and Materials, Czech Advanced Technology and Research Institute (CATRIN), Palacký University Olomouc Šlechtitelů 27 779 00 Olomouc Czech Republic IT4Innovations, VŠB - Technical University of Ostrava 17. Listopadu 2172/15, Poruba 708 00 Ostrava Czech Republic
PubMed
40103727
PubMed Central
PMC11912024
DOI
10.1039/d4sc08223k
PII: d4sc08223k
Knihovny.cz E-zdroje
A unique feature of flexible metal-organic frameworks (MOFs) is their ability to respond dynamically towards molecular stimuli by structural transitions, resulting in pore-opening and closing processes. One of the most intriguing modes is the "gating", where the material transforms from the dense to the porous state. The conditions required for the solid phase structural transition are controlled by the kinetic barriers, including nucleation of the new phase commencing on the crystallite's outer surface. Thus, surface deformation may influence the nucleation, enabling deliberate tailoring of the responsivity. In the present contribution, we investigate how chemical surface treatments (surface deformation) affect the gate opening characteristics of a typical representative of gate pressure MOFs, DUT-8(Ni) ([Ni2(ndc)2(dabco)] n , ndc = 2,6-naphthalenedicarboxylate, dabco = 1,4-diazabicyclo[2.2.2]octane). A combination of various complementary advanced characterization techniques, such as NMR, nanoFTIR, terahertz, in situ XPS, in situ EPR spectroscopies, and inverse gas chromatography, are applied to unravel the changes in surface energy and mechanism of surface deformation.
- Publikační typ
- časopisecké články MeSH
Upřesnit dle MeSH
Sdílet
Název dokumentu
Po ukončení testovacího provozu bude odkaz přesměrován adresu produkční verze portálu Medvik.