Copper, Palladium, and Reduced Graphene Oxide Co-doped Layered WS2/WO3 Nanostructures for Electrocatalytic Hydrogen Generation

  • Kumar, Vipin
  • Mishra, Rajneesh Kumar
  • Trung, Le Gia
  • Kumar, Pushpendra
  • Mane, Sagar M.
  • ... Shin, Jae Cheol
  • 외 1명
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초록

Fossil fuels have a vital role in global energy resources. The burning of fossil fuels produces pollutants and harms the environment. These environmental problems can be solved by searching for a substitute for fossil fuels. Hydrogen production bywater electrolysis has emerged as a promising substitute. It is a green, clean, and renewable energy source. Low-cost wateris abundant on the Earth. The metal and its composite material have been used to develop water electrolysis. Among thesecomposite catalytic materials, WS2/WO3 composite catalyst is well-known for its excellent physical and chemical behaviorin water electrolysis to produce hydrogen. Engineered catalysts can further enhance the catalytic performance. Therefore, weinvestigate and analyze the catalytic performance of copper (Cu), palladium (Pd), and r-GO co-doped WS2/WO3 compositematerial for water electrolysis to produce green, clean, and renewable hydrogen energy by hydrogen evolution reaction (HER). The hydrothermal synthesis method is used to prepare the WS2/WO3 composite material co-doped with Cu, Pd, and r-GO. The co-doping is favorable for fast charge transfer by providing many active catalytic sites for HER and enhancing the HERcatalytic performance. Therefore, the co-doped tungsten disulfide/oxide could be a potential composite material for efficientwater electrolysis for clean and renewable hydrogen production by electrochemical water electrolysis.

키워드

ElectrocatalysisElectrochemistryLayered nanostructuresWater splittingWS<sub>2</sub> WO<sub>3</sub> compositeONE-STEP SYNTHESISWS2 NANOSHEETSEVOLUTION REACTIONOXYGEN REDUCTIONEFFICIENTWO3TEMPERATURETRANSITIONMOS2GAP
제목
Copper, Palladium, and Reduced Graphene Oxide Co-doped Layered WS2/WO3 Nanostructures for Electrocatalytic Hydrogen Generation
저자
Kumar, VipinMishra, Rajneesh KumarTrung, Le GiaKumar, PushpendraMane, Sagar M.Shin, Jae CheolGwag, Jin Seog
DOI
10.1007/s13391-023-00458-9
발행일
2024-07
유형
Article
저널명
Electronic Materials Letters
20
4
페이지
414 ~ 424