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Factors affecting photocatalytic performance through the evolution of the properties due to the phase transition from NaBiO_(3)·2H_(2)O to BiO_(2−x)
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作者 Haoxuan Ma Yuefa Jia +1 位作者 Jongseong Bae Chunli Liu 《Frontiers in Energy》 SCIE CSCD 2022年第3期471-482,共12页
The phase transition process of a photocatalytic system from NaBiO_(3)·2H_(2)O to BiO_(2−x) has been investigated to understand the important factors that affect photocatalytic performance in a composite system. ... The phase transition process of a photocatalytic system from NaBiO_(3)·2H_(2)O to BiO_(2−x) has been investigated to understand the important factors that affect photocatalytic performance in a composite system. It is found that a proper amount of BiO2−x on the surface of NaBiO_(3)·2H_(2)O could effectively suppress the electron/hole recombination and increase the exposed reactive sites for photocatalytic reaction. A fully covered BiO2−x on NaBiO3·2H2O results in a dramatical decrease of photocatalytic degradation of dye. An over long hydrothermal process can result in BiO_(2−x) with reduced oxygen vacancies, which degrades the photocatalytic activity. Furthermore, the photocatalytic reduction ability of CO_(2) conversion has been investigated, indicating that the surface activity to different reactants also directly affects the catalytic performance. The investigation of the gradient phase transition process presents a clear guidance to construct a desired photocatalytic system, in addition to selecting gradient materials with suitable bandgap structure and a morphology with different fraction and distribution of each component. The defect evolution of each component during construction of a composite is also an important factor that should be optimized and considered in making a composite to achieve high photocatalytic efficiency. 展开更多
关键词 composite construction DISTRIBUTION bio2−x evolution of defects
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空位氧化铋/多壁碳纳米管复合催化剂低温热催化杀菌性能研究
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作者 张陈 贺南南 +2 位作者 罗豪鹏 江芳 陈欢 《环境科学学报》 CAS CSCD 北大核心 2023年第5期216-227,共12页
低温热催化杀菌技术具有优异的杀菌效率和良好的经济性,是具有应用潜力的灭菌方法.本文首先通过一步水热法合成了空位氧化铋(BiO_(2)-x)材料,同时将多壁碳纳米管(CNTs)进行酸化处理,之后将两者通过自组装的策略复合获得BiO_(2)-x/CNTs... 低温热催化杀菌技术具有优异的杀菌效率和良好的经济性,是具有应用潜力的灭菌方法.本文首先通过一步水热法合成了空位氧化铋(BiO_(2)-x)材料,同时将多壁碳纳米管(CNTs)进行酸化处理,之后将两者通过自组装的策略复合获得BiO_(2)-x/CNTs复合催化剂.采用XRD、FT-IR、SEM、XPS、电流响应及电化学阻抗分析等手段对所得BiO_(2)-x/CNTs催化剂进行表征,分析其物化特性.与BiO_(2)-x相比,BiO_(2)-x/CNTs有着更高的电荷分离和迁移效率,CNTs比例为15%的BiO_(2)-x/CNTs复合催化剂有着最佳的热催化杀菌效率,在2 h内,55℃条件下,可杀灭5.42 lg·cfu·mL^(-1)的大肠杆菌(E.coli K-12).自由基猝灭剂的实验结果表明,·OH(羟基自由基)、^(1)O_(2)(单线态氧)和·O_(2)-(超氧自由基)是BiO_(2)-x/CNTs热催化作用于E.coli K-12的主要活性物种. 展开更多
关键词 空位氧化铋/多壁碳纳米管 热催化 杀菌 晶格氧活化
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