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作 者:何少男 冯菊红[1,2] 胡学雷[1,2] 刘祺 孙锟辉[1,2] HE Shaonan;FENG Juhong;HU Xuelei;LIU Qi;SUN Kunhui(School of Chemical Engineering and Pharmacy,Wuhan Institute of Technology,Wuhan 430074,China;Key Laboratory for Green Chemical Process of Ministry of Education,Wuhan 430074,China)
机构地区:[1]武汉工程大学化工与制药学院,湖北武汉430074 [2]绿色化工过程教育部重点实验室,湖北武汉430074
出 处:《化学与生物工程》2022年第6期7-12,共6页Chemistry & Bioengineering
基 金:湖北省自然科学基金重点项目(2011CDA048)。
摘 要:钼酸铋(Bi_(2)MoO_(6))基核壳结构复合光催化剂是近年来研究较多的一种三元金属氧化物光催化材料,是Bi_(2)MoO_(6)与其它材料相互包覆形成的一种有序组装结构。在介绍Bi_(2)MoO_(6)光催化剂的基础上,分析了Bi_(2)MoO_(6)基核壳结构复合光催化剂的结构,并对其常用制备方法(水热法、溶剂热法、静电纺丝法、共沉淀法)的研究进展进行了综述,比较了各种制备方法的优缺点,提出了该类复合光催化剂的发展方向,为高效降解环境污染物、推行低碳经济提供了帮助。Bismuth molybdate(Bi_(2)MoO_(6))-based core-shell structure composite photocatalyst is a kind of ternary metal oxide photocatalyst that has stimulated enormous research interest studied widely in recent years,which has an orderly assembly structure formed by the mutual coating of Bi_(2)MoO_(6) and other materials.On the basis of the introduction of Bi_(2)MoO_(6) photocatalyst,we analyze the structure of Bi_(2)MoO_(6)-based core-shell structure composite photocatalyst,review the research progress of its common preparation methods(hydrothermal method,solvothermal method,electrospinning method,and coprecipitation method),and compare the advantages and disadvantages of various preparation methods.Moreover,we put forward the development direction of the composite photocatalyst.This study provides help for the efficient degradation of environmental pollutants and the implementation of low carbon economy.
关 键 词:钼酸铋(Bi_(2)MoO_(6)) 光催化剂 核壳结构 水热法 溶剂热法
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