共价键
缩聚物
三嗪
材料科学
光催化
化学
高分子化学
纳米技术
热解
组合化学
化学工程
有机化学
催化作用
聚合物
复合材料
工程类
作者
Kewei Wang,Li‐Ming Yang,Xi Wang,Liping Guo,Guang Cheng,Chun Zhang,Shangbin Jin,Bien Tan,Andrew I. Cooper
标识
DOI:10.1002/anie.201708548
摘要
Abstract Covalent triazine frameworks (CTFs) are normally synthesized by ionothermal methods. The harsh synthetic conditions and associated limited structural diversity do not benefit for further development and practical large‐scale synthesis of CTFs. Herein we report a new strategy to construct CTFs (CTF‐HUSTs) via a polycondensation approach, which allows the synthesis of CTFs under mild conditions from a wide array of building blocks. Interestingly, these CTFs display a layered structure. The CTFs synthesized were also readily scaled up to gram quantities. The CTFs are potential candidates for separations, photocatalysis and for energy storage applications. In particular, CTF‐HUSTs are found to be promising photocatalysts for sacrificial photocatalytic hydrogen evolution with a maximum rate of 2647 μmol h −1 g −1 under visible light. We also applied a pyrolyzed form of CTF‐HUST‐4 as an anode material in a sodium‐ion battery achieving an excellent discharge capacity of 467 mAh g −1 .
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