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作 者:李强[1] 张连红 胡程 LI Qiang;ZHANG Lian-hong;HU Cheng(Institute of Chemistry and Chemical Engineering,Southwest Petroleum University,Sichuan Chengdu 610500,China)
机构地区:[1]西南石油大学化学化工学院,四川成都610500
出 处:《广州化工》2023年第12期27-30,共4页GuangZhou Chemical Industry
摘 要:TiO_(2)作为一种优良的半导体材料,广泛适用于工业生产,同时作为一种廉价无害的催化剂,应用于有机污染物降解和光解水制氢,WO_(3)与TiO_(2)均具有一定的光催化性能,但由于二氧化钛对禁带宽度较大,电子-空穴对恢复速率快,导致其对可见光的响应小。TiO_(2)与WO_(3)的复合能够显著改善TiO_(2)的光催化性能。主要介绍近十年来WO_(3)-TiO_(2)材料的一些复合制备方法和应用,最后对其发展方向进行展望。As an excellent semiconductor material,TiO_(2)is widely used in industrial production.At the same time,as a cheap and harmless catalyst,it is used in the degradation of organic pollutants and photolysis of water for hydrogen production.Both WO_(3)and TiO_(2)have certain photocatalytic properties,but due to the band gap of the titanium oxide pair is large,and the recovery rate of the electron-hole pair is fast,resulting in a small response to visible light.The composite of TiO_(2)and WO_(3)can significantly improve the photocatalytic performance of TiO_(2).Some composite preparation methods and applications of WO_(3)-TiO_(2)materials in the past ten years were mainly introduced,and its development direction was put forward finally.
关 键 词:光催化 WO_(3)-TiO_(2) 污染物降解 制备 应用
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