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富含氮氧杂原子的共价嗪基框架的合成和结构
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作者 赵永男 高国伟 高海燕 《天津工业大学学报》 CAS 北大核心 2022年第3期36-41,68,共7页
为了获得一种新型富含氮氧杂原子的共价嗪基框架,以富含氮、氧杂原子的2,4,6-三苯氧基-1,3,5-三嗪和三聚氯氰为单体,通过傅克反应合成了这种聚合物(CTFO);IR、XPS证实了三聚氯氰在2,4,6-三苯氧基-1,3,5-三嗪的苯氧基对位上发生缩聚,形... 为了获得一种新型富含氮氧杂原子的共价嗪基框架,以富含氮、氧杂原子的2,4,6-三苯氧基-1,3,5-三嗪和三聚氯氰为单体,通过傅克反应合成了这种聚合物(CTFO);IR、XPS证实了三聚氯氰在2,4,6-三苯氧基-1,3,5-三嗪的苯氧基对位上发生缩聚,形成三连接的片层状框架结构;XRD、HRTEM测试结合结构拟合表明了CTFO的AB堆叠多孔层状结构,孔径为0.52 nm;氮气吸附测试证实了CTFO中存在0.5 nm的微孔和堆积形成的24.14 nm的介孔,比表面积为87 m^(2)/g,孔容为0.47 cm^(3)/g;热重分析表明了CTFO在低于450℃下具有良好的热稳定性。 展开更多
关键词 共价嗪基框架 氮氧双掺杂 傅克反应
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Rational Synthesis of Crystalline Covalent Triazine Framework with Methylthio Pendant Arms for Efficient Mercury(Ⅱ)Adsorption
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作者 LOU Yi-xiao ZHOU Lu-lu +1 位作者 YANG Na ZHU Xiang 《分子催化(中英文)》 CAS CSCD 北大核心 2024年第4期309-316,共8页
The interest in curtailing environmental pollution issues through physical separation processes has inspired an extensive search for novel nanoporous materials with exceptional adsorption capabilities.Covalent triazin... The interest in curtailing environmental pollution issues through physical separation processes has inspired an extensive search for novel nanoporous materials with exceptional adsorption capabilities.Covalent triazine frameworks(CTFs),emerged as a class of crystalline covalent organic frameworks(COFs),have been widely examined for various separation applications,owing to their large porosity,high stability,and rich nitrogen(N)doping.The development of CTFs for efficient adsorption of mercury(Ⅱ)(Hg^(2+))is of great importance for the field,whereas it is rarely attempted,on account of limited synthetic strategies and unknown structural-property relations of conventional CTFs derived from ionothermal approaches.Herein,we report rational synthesis of a crystalline CTF with methylthio pendant arms for efficient removal of Hg^(2+)with an exceptional capacity of 751 mg·g^(-1),ranking at the top among previously-reported adsorbents.This work may open up new possibility in the synthesis of COFs for various separations. 展开更多
关键词 CTFs methylthio pendant arms mercury adsorption structural-property relationship
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