相关链接
联系方式
  • 通信地址:江苏省南京市东南大学路2号东南大学九龙湖校区
  • 邮编:211189
  • 电话:13914766900
  • 传真:52090620
  • Email:jczhou@seu.edu.cn
当前位置:> 首页 > 论文著作 > 正文
Localized nano-solid-solution induced by Cu doping in ZnS for efficient solar hydrogen generation
作者:Li, NX (Li, Naixu)[ 1 ] ; Zhang, LZ (Zhang, Longzhou)[ 2 ] ; Zhou, JC (Zhou, Jiancheng)[ 1 ] ; Jing,
关键字:HIGH PHOTOCATALYTIC ACTIVITY; VISIBLE-LIGHT IRRADIATION; HIGHLY EFFICIENT; PHOTOELECTROCHEMICAL CELLS; SURFACE NANOSTRUCTURE; H-2 EVOLUTION; WATER; SULFIDE; CDS; NANOPARTICLES
论文来源:期刊
具体来源:DALTON TRANSACTIONS
发表时间:2014年

Nanosized photocatalysts have been shown to be important to many modern photocatalytic reactions. Control of the microstructure of the nanocrystals enables regulation of their optical properties and enhancement of specific reactions. Here, Cu2+-doped ZnS nanosphere photocatalysts with hierarchical nanostructures and controllable sizes were synthesized via a facile wet-chemical reaction. We demonstrated that small amounts of Cu2+ doping could give rise to the formation of a variety of localized, nanosized Cu1-xZnxS solid solutions that are separated by a continuous ZnS medium. The nano-solid-solutions have predictable band structures and an average size of several nanometers, which ensure facile generation of electron-hole pairs by visible light irradiation and quick migration of the photo-generated charges to the interfaces. With Ru as a cocatalyst, the as-prepared 0.5 mol% Cu2+-dopedZnS nanospheres showed a high H-2 evolution rate of 1.03 mmol h(-1), corresponding to a quantum efficiency of 26.2% at 425 nm. A hierarchicalsurface structure with a large surface area is considered crucial for the increased activity. Our work not only showed that the non-toxic metal chalcogenides achieve high efficiency but also provides a new concept of localized nano-solid-solution for photocatalytic applications.