| Literature DB >> 29393536 |
Alexander Knebel1, Paul Wulfert-Holzmann1, Sebastian Friebe1, Janet Pavel1, Ina Strauß1,2, Alexander Mundstock1, Frank Steinbach1, Jürgen Caro1,2.
Abstract
Membranes from metal-organic frameworks (MOFs) are highly interesting for industrial gas separation applications. Strongly improved performances for carbon capture and H2 purification tasks in MOF membranes are obtained by using highly reproducable and very accuratly, hierarchically grown ZIF-8-on-ZIF-67 (ZIF-8@ZIF-67) nanostructures. To forgo hardly controllable solvothermal synthesis, particles and layers are prepared by self-assembling methods. It was possible for the first time to confirm ZIF-8-on-ZIF-67 membrane growth on rough and porous ceramic supports using the layer-by-layer deposition. Additionally, hierarchical particles are made in a fast RT synthesis with high monodispersity. Characterization of the hierarchical and epitaxial grown layers and particles is performed by SEM, TEM, EDXM and gas permeation. The system ZIF-8@ZIF-67 shows a nearly doubled H2 /CO2 separation factor, regardless of whether neat membrane or mixed-matrix-membrane in comparison to other MOF materials.Entities:
Keywords: carbon capture; hydrogen purification; membranes; metal-organic frameworks; mixed-matrix-membrane (MMM)
Year: 2018 PMID: 29393536 DOI: 10.1002/chem.201705562
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236