微型多孔材料
分离(统计)
材料科学
化学工程
计算机科学
复合材料
工程类
机器学习
作者
Ji‐Jun Jiang,Lianshan Yan,Hongxing Zheng,Song Liu,Wei Zhang,Cheng‐Yong Su
摘要
In the semiconductor industry, SF6/N2 mixtures must be properly disposed of to protect the environment. Herein, three metal-organic frameworks with densely methyl-functionalized pores were designed to capture SF6. Among them, Zn(TMBDC)(DABCO)0.5 had the most suitable channels with the absorption capacity of 4.61 mmol/g, and the highest SF6/N2 selectivity is 239 at 298 K and 1 bar. Theoretical calculationsindicated that introducing methyl groups provided more affinity sites that could bind SF6. Cyclic breakthrough experiments confirmed the ability to directly separate SF6 from a SF6/N2 mixture. This porous coordination network provides a method to construct other MOFs to separate SF6/N2 mixtures and other fluorinated gases.
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