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Morphology-controlled synthesis of TiO_(2)/MoS_(2)nanocomposites with enhanced visible-light photocatalytic activity
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作者 Yuanqing Sun Huihui Lin +3 位作者 Chuanxi Wang Qian Wu Xiaojie Wang Minghui Yang 《Inorganic Chemistry Frontiers》 2018年第1期145-152,共8页
The development of photocatalysts that utilize sunlight is very important for solving the energy crisis and reducing environmental pollution.In this report,two kinds of TiO_(2)/MoS_(2)cocatalyst with novel morphologie... The development of photocatalysts that utilize sunlight is very important for solving the energy crisis and reducing environmental pollution.In this report,two kinds of TiO_(2)/MoS_(2)cocatalyst with novel morphologies(hollow and yolk-shell structure)are prepared via a polymer assisted targeted-etching method.MoS_(2),as a typical two-dimensional(2D)layered transition metal sulfide,can accept electrons and provide active sites for photocatalytic reactions.Besides,with the assistance of MoS_(2),the absorption band of the resultant heterostructures becomes broader and covers the entire visible region.Thus the photocatalytic activity of TiO_(2)in the visible light region can be improved.Moreover,the hollow and yolk-shell heterostructures of TiO_(2)/MoS_(2)possess a high specific surface area,and the excellent interface of the heterostructures enables the easy separation of holes and electrons,which can enhance the photodegradation of dye.The results demonstrate that the as-prepared TiO_(2)/MoS_(2)nanocomposites with hollow and yolk-shell structures show outstanding catalytic activity which is tested through the degradation of methylene blue and rhodamine B under visible light.Our design provides a new strategy to acquire novel photocatalysts,with various nanostructures,that have remarkable potential applications in environmental protection,e.g.water treatment and dye pollutant degradation. 展开更多
关键词 accept electrons morphology controlled synthesis absorption b photocatalytic reactionsbesideswith TiO MoS nanocomposites solving energy crisis visible light photocatalytic activity transition metal sulfidecan
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