Yunbin Li
Fujian Normal University
32 Papers
7 Citations
Yunbin Li is an academic researcher from Fujian Normal University. The author has contributed to research in topics: Chemistry & Computer science. The author has an hindex of 3, co-authored 3 publications.
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Papers
A Microporous Hydrogen-Bonded Organic Framework for Efficient Xe/Kr Separation.
Lingshan Gong,Yingxiang Ye,Ying Liu,Yunbin Li,Zongbi Bao,Shengchang Xiang,Zhangjing Zhang,Banglin Chen +7 more
TL;DR: In this article , an ultramicroporous hydrogen-bonded organic framework (HOF-40) was constructed from a cyano-based organic building unit of 1,2,4,5-tetrakis(4-cyanophenyl)benzene (TCPB), exhibiting superior separation performance for Xe/Kr mixtures, as clearly demonstrated by dynamic breakthrough curves.
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Photo Responsive Electron and Proton Conductivity within a Hydrogen-Bonded Organic Framework.
Shimin Chen,Yanling Ju,Hao Zhang,Yingbing Zou,Siou-Yuan Lin,Yunbin Li,Shuaiqi Wang,Weihua Deng,Shengchang Xiang,Banglin Chen,Zhangjing Zhang +10 more
TL;DR: In this paper , a donor-acceptor π-π stacking hydrogen-bonded organic framework (HOF; HOF-FJU-36) with zwitterionic 1,1'-bis(3-carboxybenzyl)-4,4'-bipyridinium (H2L2+) as acceptor and 2,7-naphthalene disulfonate (NDS2-) as donor to form a two-dimensional (2D) layer.
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Pure Metal–Organic Framework Microlasers with Controlled Cavity Shapes
Yuanchao Lv,Zhile Xiong,Haiyun Dong,Cong Wei,Yisi Yang,Ang Ren,Zizhu Yao,Yunbin Li,Shengchang Xiang,Zhangjing Zhang,Yong Sheng Zhao +10 more
TL;DR: The shape-engineering of pure MOF microlasers was demonstrated based on the coordination mode-tailored method, which opens a valuable route for the exploitation of MOF-based micro/nanolasers with on-demand functions.
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Optimized Sieving Effect for Ethanol/Water Separation by Ultramicroporous MOFs.
Xiao Hong Zheng,Liangji Chen,Hao Zhang,Zizhu Yao,Yisi Yang,Fahui Xiang,Yunbin Li,Shengchang Xiang,Zhangjing Zhang,Banglin Chen +9 more
TL;DR: In this article , two ultramicroporous MOFs (UTSA-280 and Co-squarate) were used as adsorbents to separate ethanol from a trace amount of water.
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A Microporous Hydrogen Bonded Organic Framework for Highly Selective Separation of Carbon Dioxide over Acetylene.
Yunbin Li,Xue Wang,Hao Zhang,Lei He,Jiali Huang,Wuji Wei,Zhen Yuan,Zhile Xiong,Huadan Chen,Shengchang Xiang,Banglin Chen,Zhangjing Zhang +11 more
- 10 Aug 2023
TL;DR: Researchers developed a microporous hydrogen-bonded organic framework (HOF-FJU-88) that selectively separates CO2 from acetylene with high efficiency, achieving a record IAST selectivity of 1894 and high CO2 uptake at ambient conditions.
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