光催化
三乙醇胺
降级(电信)
材料科学
化学工程
催化作用
制作
聚合物
亚甲蓝
纳米技术
多孔性
共价键
双功能
纳米尺度
共价有机骨架
氢
光化学
可见光谱
多相催化
纳米颗粒
载流子
电子受体
光诱导电荷分离
化学
分解水
作者
Mudasir Ahmad,Xinmeng Mao,Xin Wang,Mehraj‐ud‐din Naik,Idrees Khan,Muhammad Rizwan Tariq,Baoliang Zhang
摘要
Abstract Hypercrosslinked polymers have emerged as a new generation of porous material, offering tailorable functionality and structural definition comparable to crystalline solids. Recent developments in organic catalysts have highlighted their potential. Here, we demonstrate that hypercrosslinking induces long‐range atomic order in covalent organic framework nanobeads (Hc‐TFpBAD(CN)). These photocatalysts can effectively promote charge separation, while their nanoscale size enhances charge transport properties. First, the loading of cocatalyst increases hydrogen (H 2 ) evolution, achieving a high H 2 evolution rate of 171.3 μmol h −1 g −1 , and remains highly stable for extended photocatalytic operation up to 36 h. Second, the influence of different electron donors on stability and H 2 was investigated, with triethanolamine identified as the most effective donor. Third, the photocatalytic activity was further enhanced by introducing methylene blue (MB) dye as an electron mediator, enabling simultaneous H 2 evolution and dye degradation. The dye degradation results show that Hc‐TFpBAD(CN) achieved degradation efficiency of 99.9% within 240 min.
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