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铋系光催化剂去除环境污染物 被引量:12
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作者 丁星 杨祥龙 +2 位作者 陈浩 张礼知 《化学进展》 SCIE CAS CSCD 北大核心 2017年第9期1115-1126,共12页
铋系半导体材料是近年来研究较热的一类新型光催化剂,因其具有独特的层状结构和合适的禁带宽度,而表现出了良好的太阳光催化性能,在环境污染物去除方面展现出极大的潜力。本文综述了近年来铋系光催化剂(氧化铋、硫化铋、钨酸铋、钼酸铋... 铋系半导体材料是近年来研究较热的一类新型光催化剂,因其具有独特的层状结构和合适的禁带宽度,而表现出了良好的太阳光催化性能,在环境污染物去除方面展现出极大的潜力。本文综述了近年来铋系光催化剂(氧化铋、硫化铋、钨酸铋、钼酸铋、钒酸铋、卤氧化铋等)在环境污染物去除方面的最新研究进展,介绍了几类常见的铋系半导体材料及其制备方法,归纳和总结了铋系光催化剂在大气净化、有机废水处理、重金属离子处理和杀菌等方面的应用,同时对今后铋系光催化剂在环境污染去除方面的应用进行了展望。 展开更多
关键词 铋系半导体 可见光 光催化 环境污染物
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Iodine-doping-assisted tunable introduction of oxygen vacancies on bismuth tungstate photocatalysts for highly efficient molecular oxygen activation and pentachlorophenol mineralization 被引量:1
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作者 Shengyao Wang Zhongliang Xiong +2 位作者 Nan Yang Xing Ding Hao Chen 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第10期1544-1553,共10页
In this work,the tunable introduction of oxygen vacancies in bismuth tungstate was realized via asimple solvothermal method with the assistance of iodine doping.With the predictions afforded bytheoretical calculations... In this work,the tunable introduction of oxygen vacancies in bismuth tungstate was realized via asimple solvothermal method with the assistance of iodine doping.With the predictions afforded bytheoretical calculations,the as-prepared bismuth tungstate was characterized using various tech-niques,such as X-ray diffraction,Raman spectroscopy,scanning electron microscopy,transmissionelectron microscopy,X-ray photoelectron spectroscopy,electron spin resonance spectroscopy,anduV-Vis diffuse reflectance spectroscopy.The different concentrations of the oxygen vacancies onbismuth tungstate were found to be intensely correlated with iodine doping,which weakened thelattice oxygen bonds.Owing to the sufficient oxygen vacancies introduced in bismuth tungstate as aresult of iodine doping,the molecular oxygen activation was remarkably enhanced,thus endowingbismuth tungstate with high activity for the photocatalytic degradation of sodium pentachloro-phenate.More encouraging is the total organic carbon removal rate of sodium pentachlorophenateover iodine-doped bismuth tungstate that exceeded 90%in only 2 h and was 10.6 times higher thanthat of the pristine bismuth tungstate under visible light irradiation.Moreover,the mechanism,through which the degradation of sodium pentachlorophenate over iodine-doped bismuth tung-state is enhanced,was speculated based on the results of radical detection and capture experiments.This work provides a new perspective for the enhanced photocatalytic degradation of organochlo-rine pesticides from the oxygen vacancy-induced molecular oxygen activation over iodine-dopedbismuth tungstate. 展开更多
关键词 Iodine doping Oxygen vacancy Bismuth tungstate PHOTOCATALYST Molecular oxygen activation NaPCP
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