Tuning Gate-Opening of a Flexible Metal–Organic Framework for Ternary Gas Sieving Separation

Qiubing Dong, Xin Zhang, Shuang Liu, Rui Biao Lin, Yanan Guo, Yunsheng Ma, Akira Yonezu, Rajamani Krishna, Gongpin Liu, Jingui Duan, Ryotaro Matsuda, Wanqin Jin, Banglin Chen

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220 引用 (Scopus)

摘要

In comparison with the fast development of binary mixture separations, ternary mixture separations are significantly more difficult and have rarely been realized by a single material. Herein, a new strategy of tuning the gate-opening pressure of flexible MOFs is developed to tackle such a challenge. As demonstrated by a flexible framework NTU-65, the gate-opening pressure of ethylene (C2H4), acetylene (C2H2), and carbon dioxide (CO2) can be regulated by temperature. Therefore, efficient sieving separation of this ternary mixture was realized. Under optimized temperature, NTU-65 adsorbed a large amount of C2H2 and CO2 through gate-opening and only negligible amount of C2H4. Breakthrough experiments demonstrated that this material can simultaneously capture C2H2 and CO2, yielding polymer-grade (>99.99 %) C2H4 from single breakthrough separation.

源语言英语
页(从-至)22756-22762
页数7
期刊Angewandte Chemie - International Edition
59
50
DOI
出版状态已出版 - 7 12月 2020

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