Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers

10.1021/acssuschemeng.8b05333

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Main Authors: Cheng, Youdong, Zhai, Linzhi, Tong, Minman, Kundu, Tanay, Liu, Guoliang, Ying, Yunpan, Dong, Jinqiao, Wang, Yuxiang, Zhao, Dan
Other Authors: CHEMICAL & BIOMOLECULAR ENGINEERING
Format: Article
Language:English
Published: AMERICAN CHEMICAL SOCIETY 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/169610
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Institution: National University of Singapore
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spelling sg-nus-scholar.10635-1696102024-03-26T08:47:38Z Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers Cheng, Youdong Zhai, Linzhi Tong, Minman Kundu, Tanay Liu, Guoliang Ying, Yunpan Dong, Jinqiao Wang, Yuxiang Zhao, Dan CHEMICAL & BIOMOLECULAR ENGINEERING Science & Technology Physical Sciences Technology Chemistry, Multidisciplinary Green & Sustainable Science & Technology Engineering, Chemical Chemistry Science & Technology - Other Topics Engineering CO2 capture Mixed matrix membrane Polysulfone Hollow structure Ionic covalent organic filler FRAMEWORK NANOSHEETS CO2 CAPTURE SEPARATION ULTRATHIN 10.1021/acssuschemeng.8b05333 ACS SUSTAINABLE CHEMISTRY & ENGINEERING 7 1 1564-1573 2020-06-10T05:03:57Z 2020-06-10T05:03:57Z 2019-01-07 2020-06-08T10:22:56Z Article Cheng, Youdong, Zhai, Linzhi, Tong, Minman, Kundu, Tanay, Liu, Guoliang, Ying, Yunpan, Dong, Jinqiao, Wang, Yuxiang, Zhao, Dan (2019-01-07). Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers. ACS SUSTAINABLE CHEMISTRY & ENGINEERING 7 (1) : 1564-1573. ScholarBank@NUS Repository. https://doi.org/10.1021/acssuschemeng.8b05333 21680485 https://scholarbank.nus.edu.sg/handle/10635/169610 en AMERICAN CHEMICAL SOCIETY 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, Multidisciplinary
Green & Sustainable Science & Technology
Engineering, Chemical
Chemistry
Science & Technology - Other Topics
Engineering
CO2 capture
Mixed matrix membrane
Polysulfone
Hollow structure
Ionic covalent organic filler
FRAMEWORK NANOSHEETS
CO2 CAPTURE
SEPARATION
ULTRATHIN
spellingShingle Science & Technology
Physical Sciences
Technology
Chemistry, Multidisciplinary
Green & Sustainable Science & Technology
Engineering, Chemical
Chemistry
Science & Technology - Other Topics
Engineering
CO2 capture
Mixed matrix membrane
Polysulfone
Hollow structure
Ionic covalent organic filler
FRAMEWORK NANOSHEETS
CO2 CAPTURE
SEPARATION
ULTRATHIN
Cheng, Youdong
Zhai, Linzhi
Tong, Minman
Kundu, Tanay
Liu, Guoliang
Ying, Yunpan
Dong, Jinqiao
Wang, Yuxiang
Zhao, Dan
Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers
description 10.1021/acssuschemeng.8b05333
author2 CHEMICAL & BIOMOLECULAR ENGINEERING
author_facet CHEMICAL & BIOMOLECULAR ENGINEERING
Cheng, Youdong
Zhai, Linzhi
Tong, Minman
Kundu, Tanay
Liu, Guoliang
Ying, Yunpan
Dong, Jinqiao
Wang, Yuxiang
Zhao, Dan
format Article
author Cheng, Youdong
Zhai, Linzhi
Tong, Minman
Kundu, Tanay
Liu, Guoliang
Ying, Yunpan
Dong, Jinqiao
Wang, Yuxiang
Zhao, Dan
author_sort Cheng, Youdong
title Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers
title_short Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers
title_full Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers
title_fullStr Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers
title_full_unstemmed Selective Gas Permeation in Mixed Matrix Membranes Accelerated by Hollow Ionic Covalent Organic Polymers
title_sort selective gas permeation in mixed matrix membranes accelerated by hollow ionic covalent organic polymers
publisher AMERICAN CHEMICAL SOCIETY
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/169610
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