光热治疗
催化作用
光热效应
化学
共价键
纳米技术
光催化
光化学
化学工程
能量转换
化学能
光电效应
太阳能
制氢
材料科学
共价有机骨架
纳米颗粒
能量转换效率
太阳能转换
激光器
组合化学
范围(计算机科学)
科技与社会
光热光谱学
作者
Haiyang Liu,Yuxin Hou,Xianghong Niu,Si Zhu,L W Yang,H T Xia,Shuo‐Wang Yang,Xiaoming Liu
摘要
ABSTRACT Covalent organic frameworks (COFs) have recently attracted tremendous attention as advanced photocatalytic platforms for H 2 O 2 production from oxygen and water. However, their intrinsic catalytic activity and solar‐to‐chemical energy conversion efficiency are unsatisfactory for practical applications. In this work, a photothermal synergistic catalysis strategy for improving H 2 O 2 production of photocatalysts was proposed. As a proof of concept, two novel diphenoquinone‐based frameworks (COF‐JLU240 and COF‐JLU241) with donor‐acceptor character were constructed for the first time. These frameworks feature broad light harvesting, inherent photoelectric properties, and superior photothermal conversion efficiency. Under the illumination of a 660 nm laser with 100 mW cm −2 , the temperature of COF‐JLU241 drastically increased from 26.5°C to 184.6°C within 1 min. Importantly, COF‐JLU241 exhibits an impressive H 2 O 2 production rate of 4894.9 µmol h − 1 g − 1 in pure water under simulated sunlight, which is 3.86‐fold higher than that obtained at the conventional temperature (23°C). Experimental and theoretical studies revealed that increasing the reaction temperature via photothermal effect can effectively promote the separation and transport of photogenerated charges and reduce the energy barrier for surface reactions. This finding contributes a fascinating photothermal synergy strategy for increasing the conversion of solar into chemical energy and broadens the scope of COF‐based photocatalysts.
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