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通过门控机制在稳定的氢键有机骨架中分离乙烯/乙烷。

Ethylene/ethane separation in a stable hydrogen-bonded organic framework through a gating mechanism.

机构信息

Fujian Provincial Key Laboratory of Polymer Materials, College of Chemistry and Materials Science, Fujian Normal University, Fuzhou, China.

College of Chemistry and Chemical Engineering, Shanxi Key Laboratory of Gas Energy Efficient and Clean Utilization, Taiyuan University of Technology, Taiyuan, China.

出版信息

Nat Chem. 2021 Oct;13(10):933-939. doi: 10.1038/s41557-021-00740-z. Epub 2021 Jul 8.

Abstract

Porous materials are very promising for the development of cost- and energy-efficient separation processes, such as for the purification of ethylene from ethylene/ethane mixture-an important but currently challenging industrial process. Here we report a microporous hydrogen-bonded organic framework that takes up ethylene with very good selectivity over ethane through a gating mechanism. The material consists of tetracyano-bicarbazole building blocks held together through intermolecular CN···H-C hydrogen bonding interactions, and forms as a threefold-interpenetrated framework with pores of suitable size for the selective capture of ethylene. The hydrogen-bonded organic framework exhibits a gating mechanism in which the threshold pressure required for guest uptake varies with the temperature. Ethylene/ethane separation is validated by breakthrough experiments with high purity of ethylene (99.1%) at 333 K. Hydrogen-bonded organic frameworks are usually not robust, yet this material was stable under harsh conditions, including exposure to strong acidity, basicity and a variety of highly polar solvents.

摘要

多孔材料在开发具有成本效益和节能的分离工艺方面具有很大的前景,例如用于从乙烯/乙烷混合物中纯化乙烯——这是一个重要但目前具有挑战性的工业过程。在这里,我们报告了一种微孔氢键有机骨架,通过门控机制对乙烷具有非常好的乙烯选择性。该材料由四氰基双咔唑构建块组成,通过分子间的 CN···H-C 氢键相互作用结合在一起,并形成具有合适尺寸的三倍互穿骨架,可选择性捕获乙烯。氢键有机骨架表现出一种门控机制,其中吸收客体所需的阈值压力随温度而变化。通过在 333 K 下进行的具有高纯度乙烯(99.1%)的突破实验验证了乙烯/乙烷的分离。氢键有机骨架通常不坚固,但这种材料在苛刻的条件下稳定,包括暴露于强酸、强碱和各种高极性溶剂。

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