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将路易斯碱性位点固定到稳定的乙烷选择性金属有机框架中,实现从三元混合物中一步分离乙烯。

Immobilization of Lewis Basic Sites into a Stable Ethane-Selective MOF Enabling One-Step Separation of Ethylene from a Ternary Mixture.

作者信息

Gu Xiao-Wen, Wang Jia-Xin, Wu Enyu, Wu Hui, Zhou Wei, Qian Guodong, Chen Banglin, Li Bin

机构信息

State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou 310027, China.

NIST Center for Neutron Research, National Institute of Standards and Technology, Gaithersburg, Maryland 20899-6102, United States.

出版信息

J Am Chem Soc. 2022 Feb 16;144(6):2614-2623. doi: 10.1021/jacs.1c10973. Epub 2022 Feb 2.

Abstract

Purification of CH from a ternary CH/CH/CH mixture by one-step adsorption separation is of prime importance but challenging in the petrochemical industry; however, effective strategies to design high-performance adsorbents are lacking. We herein report for the first time the incorporation of Lewis basic sites into a CH-selective MOF, enabling efficient one-step production of polymer-grade CH from ternary mixtures. Introduction of amino groups into highly stable CH-selective UiO-67 can not only partition large pores into smaller cagelike pockets to provide suitable pore confinement but also offer additional binding sites to simultaneously enhance CH and CH adsorption capacities over CH. The amino-functionalized UiO-67-(NH) thus exhibits exceptionally high CH and CH uptakes as well as benchmark CH/CH and CH/CH selectivities, surpassing all of the CH/CH-selective materials reported so far. Theoretical calculations combined with in situ infrared spectroscopy indicate that the synergetic effect of suitable pore confinement and functional surfaces decorated with amino groups provides overall stronger multipoint van der Waals interactions with CH and CH over CH. The exceptional performance of UiO-67-(NH) was evidenced by breakthrough experiments for CH/CH/CH mixtures under dry and wet conditions, providing a remarkable CH productivity of 0.55 mmol g at ambient conditions.

摘要

通过一步吸附分离从三元CH/CH/CH混合物中纯化CH在石化行业中至关重要但具有挑战性;然而,目前缺乏设计高性能吸附剂的有效策略。我们在此首次报道将路易斯碱性位点引入CH选择性金属有机框架(MOF),从而能够从三元混合物中高效一步生产聚合物级CH。将氨基引入高度稳定的CH选择性UiO-67中,不仅可以将大孔分隔成较小的笼状口袋以提供合适的孔限域,还能提供额外的结合位点,同时提高CH和CH对CH的吸附容量。因此,氨基功能化的UiO-67-(NH)表现出极高的CH和CH吸附量以及基准的CH/CH和CH/CH选择性,超过了目前报道的所有CH/CH选择性材料。理论计算结合原位红外光谱表明,合适的孔限域和氨基修饰的功能表面的协同效应提供了与CH和CH相比与CH更强的多点范德华相互作用。UiO-67-(NH)在干燥和潮湿条件下对CH/CH/CH混合物的突破实验证明了其卓越性能,在环境条件下提供了0.55 mmol g的显著CH生产率。

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