环境友好型
制氢
分解水
化石燃料
环境污染
化学
人工光合作用
光催化
能量载体
太阳能
废物管理
氢燃料
氢
燃烧
能量转换
纳米技术
催化作用
环境科学
材料科学
环境保护
有机化学
工程类
生态学
热力学
物理
电气工程
生物
作者
Tianfang Zheng,Aijun Li,Jiahong Han,Xiaofeng Wang
标识
DOI:10.1002/cplu.202200424
摘要
Abstract The problems of resource depletion and environmental pollution caused by the excessive use of fossil fuels greatly restrict the rapid development of human technology and industry, which has led to a high demand for the development of new and clean energy sources. Hydrogen, due to its high calorific value and environmentally friendly combustion products, is undoubtedly a very promising energy carrier. The current methods of industrial hydrogen production are mainly water electrocatalytic decomposition or fossil fuels conversion, which also results in the waste of other energy sources. Since only one‐step is involved during the conversion from solar to chemical energy and thus unnecessary energy waste is avoided, solar energy photocatalytic decomposition of water provides a more viable method for hydrogen production. The utilization of biohybrid molecules, which are widely available in nature and environmentally friendly, further reduce the cost of such photocatalytic systems. This Review discusses the research progress on hydrogen production using biohybrid molecules for photocatalytic hydrogen evolution. The basic reaction mechanism, general types and system structures about biohybrid molecule‐based photocatalysts are summarized. The current challenges and prospects in the research of water splitting hydrogen evolution by biohybrid molecules photocatalysts are presented.
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