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
基金supported by the National Natural Science Foundation of China(no.51503085)open project of state key laboratory of supramolecular structure and materials(sklssm201724)Science Foundation of China University of Petroleum,Beijing(no.2462017YJRC027).
文摘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.