Please use this identifier to cite or link to this item: https://doi.org/10.1038/ncomms14460
Title: Reversed thermo-switchable molecular sieving membranes composed of two-dimensional metal-organic nanosheets for gas separation
Authors: Wang, Xuerui 
Chi, Chenglong 
Zhang, Kang 
Qian, Yuhong 
Gupta, Krishna M 
Kang, Zixi 
Jiang, Jianwen 
Zhao, Dan 
Keywords: Science & Technology
Multidisciplinary Sciences
Science & Technology - Other Topics
GRAPHENE OXIDE MEMBRANES
ZEOLITIC IMIDAZOLATE FRAMEWORKS
MECHANICAL-PROPERTIES
DYNAMICS SIMULATIONS
ELASTIC PROPERTIES
LIGHT GASES
ADSORPTION
TRANSPORT
CRYSTALS
CAPTURE
Issue Date: 16-Feb-2017
Publisher: NATURE PUBLISHING GROUP
Citation: Wang, Xuerui, Chi, Chenglong, Zhang, Kang, Qian, Yuhong, Gupta, Krishna M, Kang, Zixi, Jiang, Jianwen, Zhao, Dan (2017-02-16). Reversed thermo-switchable molecular sieving membranes composed of two-dimensional metal-organic nanosheets for gas separation. NATURE COMMUNICATIONS 8 (1). ScholarBank@NUS Repository. https://doi.org/10.1038/ncomms14460
Abstract: © 2017 The Author(s). It is highly desirable to reduce the membrane thickness in order to maximize the throughput and break the trade-off limitation for membrane-based gas separation. Two-dimensional membranes composed of atomic-thick graphene or graphene oxide nanosheets have gas transport pathways that are at least three orders of magnitude higher than the membrane thickness, leading to reduced gas permeation flux and impaired separation throughput. Here we present nm-thick molecular sieving membranes composed of porous two-dimensional metal-organic nanosheets. These membranes possess pore openings parallel to gas concentration gradient allowing high gas permeation flux and high selectivity, which are proven by both experiment and molecular dynamics simulation. Furthermore, the gas transport pathways of these membranes exhibit a reversed thermo-switchable feature, which is attributed to the molecular flexibility of the building metal-organic nanosheets.
Source Title: NATURE COMMUNICATIONS
URI: https://scholarbank.nus.edu.sg/handle/10635/170473
ISSN: 2041-1723
DOI: 10.1038/ncomms14460
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