Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers

10.1039/c8ta10333j

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Main Authors: Cheng, Youdong, Zhai, Linzhi, Ying, Yunpan, Wang, Yuxiang, Liu, Guoliang, Dong, Jinqiao, Ng, Denise ZL, Khan, Saif A, Zhao, Dan
Other Authors: CHEMICAL & BIOMOLECULAR ENGINEERING
Format: Article
Language:English
Published: ROYAL SOCIETY OF CHEMISTRY 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/169834
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Institution: National University of Singapore
Language: English
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spelling sg-nus-scholar.10635-1698342024-03-26T08:47:39Z Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers Cheng, Youdong Zhai, Linzhi Ying, Yunpan Wang, Yuxiang Liu, Guoliang Dong, Jinqiao Ng, Denise ZL Khan, Saif A Zhao, Dan CHEMICAL & BIOMOLECULAR ENGINEERING Science & Technology Physical Sciences Technology Chemistry, Physical Energy & Fuels Materials Science, Multidisciplinary Chemistry Materials Science ENHANCED GAS SEPARATION INTRINSIC MICROPOROSITY POLYMERS PERFORMANCE NANOSHEETS TRANSPORT SELECTIVITY STABILITY 10.1039/c8ta10333j JOURNAL OF MATERIALS CHEMISTRY A 7 9 4549-4560 2020-06-17T02:19:06Z 2020-06-17T02:19:06Z 2019-03-07 2020-06-09T04:50:17Z Article Cheng, Youdong, Zhai, Linzhi, Ying, Yunpan, Wang, Yuxiang, Liu, Guoliang, Dong, Jinqiao, Ng, Denise ZL, Khan, Saif A, Zhao, Dan (2019-03-07). Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers. JOURNAL OF MATERIALS CHEMISTRY A 7 (9) : 4549-4560. ScholarBank@NUS Repository. https://doi.org/10.1039/c8ta10333j 20507488 20507496 https://scholarbank.nus.edu.sg/handle/10635/169834 en ROYAL SOCIETY OF CHEMISTRY Elements
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
language English
topic Science & Technology
Physical Sciences
Technology
Chemistry, Physical
Energy & Fuels
Materials Science, Multidisciplinary
Chemistry
Materials Science
ENHANCED GAS SEPARATION
INTRINSIC MICROPOROSITY
POLYMERS
PERFORMANCE
NANOSHEETS
TRANSPORT
SELECTIVITY
STABILITY
spellingShingle Science & Technology
Physical Sciences
Technology
Chemistry, Physical
Energy & Fuels
Materials Science, Multidisciplinary
Chemistry
Materials Science
ENHANCED GAS SEPARATION
INTRINSIC MICROPOROSITY
POLYMERS
PERFORMANCE
NANOSHEETS
TRANSPORT
SELECTIVITY
STABILITY
Cheng, Youdong
Zhai, Linzhi
Ying, Yunpan
Wang, Yuxiang
Liu, Guoliang
Dong, Jinqiao
Ng, Denise ZL
Khan, Saif A
Zhao, Dan
Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers
description 10.1039/c8ta10333j
author2 CHEMICAL & BIOMOLECULAR ENGINEERING
author_facet CHEMICAL & BIOMOLECULAR ENGINEERING
Cheng, Youdong
Zhai, Linzhi
Ying, Yunpan
Wang, Yuxiang
Liu, Guoliang
Dong, Jinqiao
Ng, Denise ZL
Khan, Saif A
Zhao, Dan
format Article
author Cheng, Youdong
Zhai, Linzhi
Ying, Yunpan
Wang, Yuxiang
Liu, Guoliang
Dong, Jinqiao
Ng, Denise ZL
Khan, Saif A
Zhao, Dan
author_sort Cheng, Youdong
title Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers
title_short Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers
title_full Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers
title_fullStr Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers
title_full_unstemmed Highly efficient CO2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers
title_sort highly efficient co2 capture by mixed matrix membranes containing three-dimensional covalent organic framework fillers
publisher ROYAL SOCIETY OF CHEMISTRY
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/169834
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