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Highly hydrophilic covalent organic frameworks as efficient and reusable photocatalysts for oxidative coupling of amines in aqueous solution

机译:高度亲水性共价有机框架高效、可重用的催化剂氧化偶联胺的水溶液

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摘要

As a class of new emerging crystalline porous materials, photoactive covalent organic frameworks (COFs) have exhibited great potential for photocatalytic applications for metal-free organic transformations. In this study, we report three hydrophilic two-dimensional (2D) COFs achieved by a polycondensation reaction of 2,5-dimethoxyterephthalohydrazide (DMTH), 1,3,5-triformylbenzene (TFB) and 2-hydroxy-1,3,5-benzenetricarbaldehyde (SOH) under solvothermal conditions. The resulted COF materials, TFB-XX-DMTH (XX = 33, 50 and 66, corresponding to a molar ratio of TFB/SOH = 1 : 2, 1 : 1, and 2 : 1), are successfully constructed by a three-component in situ assembly strategy and thus exhibit high crystallinity, large surface areas (up to 1808 m2 g−1) and good thermal and chemical stability. Moreover, benefiting from the enhanced charge separation efficiency and high hydrophilicity, the TFB-XX-DMTH materials could be employed as photocatalysts for visible-light-driven oxidative coupling reactions of benzylamines in aqueous solution. The photocatalytic performance with high conversion, selectivity and recyclability could be attributed to a combined result of efficient generation, migration and separation of photogenerated carriers in such a platform. Our results provide insights into the structure–function correlation of COF photocatalysts and also highlight their potential in developing photofunctional COFs for sustainable organic transformations.
机译:作为新兴的一种水晶多孔材料、光敏共价有机框架(咖啡)表现出巨大的潜力为不含金属的光催化应用有机转换。三亲水二维(2 d)咖啡通过缩聚反应2, 5-dimethoxyterephthalohydrazide (DMTH),1、3、5-triformylbenzene (TFB)和2-hydroxy-1 3 5-benzenetricarbaldehyde (SOH)solvothermal条件下。材料,TFB-XX-DMTH (XX = 33岁的50到66年,对应的摩尔比率TFB / SOH =1: 2、1:1,2:1),是成功的由一个三分量的原位组装策略,从而表现出高结晶度,大的表面积(1808平方米克−1)和良好的化学、热稳定性。受益于增强的电荷分离效率和高亲水性,TFB-XX-DMTH材料可以使用论文对visible-light-driven氧化苄胺在水耦合反应解决方案。高转换,选择性和可回收性可以归因于一个组合的结果吗高效的一代,迁移和分离photogenerated运营商在这样一个平台。结果提供见解结构相关的咖啡论文,还强调自己的潜力在发展中photofunctional咖啡可持续的有机转换。

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