Well-designed Te/SnS2/Ag artificial nanoleaves for enabling and enhancing visible-light driven overall splitting of pure water

作者:Yan, Changzeng; Xue, Xiaolan; Zhang, Wenjun; Li, Xiaojie; Liu, Juan; Yang, Songyuan; Hu, Yi; Chen, Renpeng; Yan, Yaping; Zhu, Guoyin; Kang, Zhenhui*; Kang, Dae Joon*; Liu, Jie; Jin, Zhong*
来源:Nano Energy, 2017, 39: 539-545.
DOI:10.1016/j.nanoen.2017.07.039

摘要

To produce hydrogen and oxygen from photocatalytic overall splitting of pure water provides a promising green route to directly convert solar energy to clean fuel. However, the design and fabrication of high-efficiency photocatalyst is challenging. Here we present that by connecting different nanostructures together in a rational fashion, components that cannot individually split water into H-2 and O-2 can work together as efficient photocatalyst with high solar-to-hydrogen (STH) energy conversion efficiency and avoid the use of any sacrificial reagent. Specifically, Te/SnS2/Ag artificial nanoleaves (ANLs) consist of ultrathin SnS2 nanoplates grown on Te nanowires and decorated with numerous Ag nanoparticles. The appropriate band structure of Te/SnS2 p-n junctions and the surface plasmon resonance of Ag nanoparticles synergistically enhance the quantum yield and separation efficiency of electron-hole pairs. As a result, Te/SnS2/Ag ANLs enable visible-light driven overall water-splitting without any sacrificial reagent and exhibit high H-2 and O-2 production rates of 332.4 and 166.2 mu mol h(-1), respectively. Well-preserved structure after long-term measurement indicates its high stability. It represents a feasible approach for direct H-2 production from only sunlight, pure water, and rationally-designed ANL photocatalysts.