4.6 Article

Electrospinning Preparation of GaN:ZnO Solid Solution Nanorods with Visible-Light-Driven Photocatalytic Activity toward H2 Production

期刊

APPLIED SCIENCES-BASEL
卷 11, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/app112210854

关键词

GaN:ZnO solid solution nanorods & nbsp; ; electrospinning technology; hydrogen evolution; visible-light photocatalysis

资金

  1. National Natural Science Foundation of China [NSFC 21875037, 51502036]
  2. National Key Research and Development Program of China [2016YFB0302303, 2019YFC1908203]

向作者/读者索取更多资源

The GaN:ZnO solid solution nanorods were successfully synthesized using electro-spun and calcination methods, loaded with Rh2-yCryO3 co-catalyst for photocatalytic H-2 evolution under visible light. The nitridation temperature significantly influenced the photocatalytic performance, which is related to specific surface area and absorbable visible light wavelength range.
The development of a facile method for the synthesis of GaN:ZnO solid solution, an attractive material with a wurtzite-type structure, is vital to enhance its photocatalytic activity toward H-2 evolution. Herein, GaN:ZnO solid solution nanorods with diameters of around 180 nm were fabricated by combining the electro-spun method with a sequentially calcinating process. Photocatalytic water-splitting activities of the as-obtained samples loaded with Rh2-yCryO3 co-catalyst were estimated by H-2 evolution under visible-light irradiation. The as-prepared GaN:ZnO nanorods at a nitridation temperature of 850 & DEG;C showed the optimal performance. Careful characterization of the GaN:ZnO solid solution nanorods indicated that the nitridation temperature is an important parameter affecting the photocatalytic performance, which is related to the specific surface area and the absorbable visible-light wavelength range. Finally, the mechanism of the GaN:ZnO solid solution nanorods was also investigated. The proposed synthesis strategy paves a new way to realize excellent activity and recyclability of GaN:ZnO solid solution nanorod photocatalysts for hydrogen generation.

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