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Microporous frameworks with conjugated π-electron skeletons for enhanced gas and organic vapor capture
Microporous and Mesoporous Materials ( IF 4.8 ) Pub Date : 2018-03-19 , DOI: 10.1016/j.micromeso.2018.03.007
Jianwei Guo , Xiong Li , Shuqin Fu , Rui Tong , Paul D. Topham , Jiawei Wang

Novel conjugated microporous frameworks based on adamantane (CMF-Ads) have been successfully synthesized under mild conditions. Eight-arm tetraphenyl “knots” and a conjugated π-electron skeleton endowed the target CMF-Ads with ultra-high thermal stability (up to 500 °C), high surface area (up to 907 m2 g−1), excellent CO2 uptake capacity of 15.13 wt % at 273 K and 1 bar, as well as superior organic vapor (benzene, hexane) adsorption. The ultra-high gas uptake capacity and selectivity of these CMF-Ads herein exceeds most conjugated microporous frameworks reported to date, highlighting their potential as materials for clean energy application.



中文翻译:

具有共轭π电子骨架的微孔骨架可增强气体和有机蒸气的捕集

基于金刚烷(CMF-Ad s)的新型共轭微孔骨架已在温和条件下成功合成。八臂四苯基“结”和共轭π电子骨架赋予目标CMF-Ad s超高的热稳定性(最高500°C),高表面积(最高907 m 2  g -1),出色的在273 K和1 bar下的CO 2吸收能力为15.13 wt%,并具有优异的有机蒸气(苯,己烷)吸附能力。本文中这些CMF-Ad的超高气体吸收能力和选择性超过了迄今为止报道的大多数共轭微孔构架,突出了它们作为清洁能源应用材料的潜力。

更新日期:2018-03-19
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