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Facile synthesis of hierarchical CdS nanoflowers for efficient piezocatalytic hydrogen evolution.
Lu, Xiaoxiao; Shan, Tao; Deng, Lixun; Li, Mengqing; Pan, Xiaoyang; Yang, Xuhui; Zhao, Xiaojing; Yang, Min-Quan.
Affiliation
  • Lu X; College of Environmental and Resource Sciences, College of Carbon Neutral Modern Industry, Fujian Key Laboratory of Pollution Control & Resource Reuse, Fujian Normal University, Fuzhou 350007, P.R. China. xhyang@fjnu.edu.cn.
  • Shan T; College of Chemical Engineering and Materials, Quanzhou Normal University, Quanzhou, 362000, China. zhaoxj199011@163.com.
  • Deng L; College of Environmental and Resource Sciences, College of Carbon Neutral Modern Industry, Fujian Key Laboratory of Pollution Control & Resource Reuse, Fujian Normal University, Fuzhou 350007, P.R. China. xhyang@fjnu.edu.cn.
  • Li M; College of Environmental and Resource Sciences, College of Carbon Neutral Modern Industry, Fujian Key Laboratory of Pollution Control & Resource Reuse, Fujian Normal University, Fuzhou 350007, P.R. China. xhyang@fjnu.edu.cn.
  • Pan X; College of Environmental and Resource Sciences, College of Carbon Neutral Modern Industry, Fujian Key Laboratory of Pollution Control & Resource Reuse, Fujian Normal University, Fuzhou 350007, P.R. China. xhyang@fjnu.edu.cn.
  • Yang X; College of Chemical Engineering and Materials, Quanzhou Normal University, Quanzhou, 362000, China. zhaoxj199011@163.com.
  • Zhao X; College of Environmental and Resource Sciences, College of Carbon Neutral Modern Industry, Fujian Key Laboratory of Pollution Control & Resource Reuse, Fujian Normal University, Fuzhou 350007, P.R. China. xhyang@fjnu.edu.cn.
  • Yang MQ; College of Chemical Engineering and Materials, Quanzhou Normal University, Quanzhou, 362000, China. zhaoxj199011@163.com.
Dalton Trans ; 52(37): 13426-13434, 2023 Sep 26.
Article in En | MEDLINE | ID: mdl-37695161
ABSTRACT
Piezocatalytic hydrogen evolution has emerged as a promising field for the collection and utilization of mechanical energy, as well as for generating sustainable energy throughout the day. Hexagonal CdS, an established semiconductor photocatalyst, has been widely investigated for its ability to split water into H2. However, its piezocatalytic performance has received less attention, and the relationship between its structure and piezocatalytic activity remains unclear. In this study, we prepared 3D ultrathin CdS nanoflowers with high voltage electrical response and low impedance. In pure water, without the use of any cocatalyst, CdS exhibited a piezoelectric catalytic hydrogen production rate of 1.46 mmol h-1 g-1, which was three times higher than that of CdS nanospheres (0.46 mmol h-1 g-1). Furthermore, the value-added oxidation product H2O2 was produced during the process of piezoelectric catalysis. These findings provide new insights for the design of high-efficiency piezoelectric catalytic hydrogen production.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Dalton Trans Journal subject: QUIMICA Year: 2023 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Dalton Trans Journal subject: QUIMICA Year: 2023 Document type: Article