质子化
门控
二氧化碳
化学
碳纤维
纳米技术
化学工程
材料科学
有机化学
生物物理学
离子
复合数
工程类
复合材料
生物
作者
Jian Lei,Yaqi Hou,Huimeng Wang,Yi Fan,Yunmao Zhang,Baiyi Chen,Shijie Yu,Xu Hou
标识
DOI:10.1002/anie.202201109
摘要
Carbon dioxide (CO2 ) capture and storage technologies are promising to limit CO2 emission from anthropogenic activities, to achieve carbon neutrality goals. CO2 capture requires one to separate CO2 from other gases, and therefore a gas flow system that exhibits discernible gating behaviors for CO2 would be very useful. Here we propose a self-adaptive CO2 gas valve composed of chemically responsive liquid gating systems. The transmembrane critical pressures of the liquid gate vary upon the presence of CO2 , due to the superamphiphiles assembled by poly(propylene glycol) bis(2-aminopropyl ether) and oleic acid in gating liquids that are protonated specifically by CO2 . It is shown that the valve can perform self-adaptive regulation for specific gases and different concentrations of CO2 . This protonation-induced liquid gating mechanism opens a potential platform for applications of CO2 separators, detectors, sensors and beyond.
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