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- W4205787827 endingPage "2111" @default.
- W4205787827 startingPage "2096" @default.
- W4205787827 abstract "Ammonia (NH3), possessing high hydrogen content and energy density, has been widely employed for fertilizers and value-added chemicals in green energy carriers and fuels. However, the current NH3 synthesis largely depends on the traditional Haber-Bosch process, which needs tremendous energy consumption and generates greenhouse gas, resulting in severe energy and environmental issues. The electrochemical strategy of converting N2 to NH3 under mild conditions is a potentially promising route to realize an environmentally friendly concept. Among various catalysts, molybdenum/tungsten-based electrocatalysts have been widely used in electrochemical catalytic and energy conversion. This review describes the latest progress of molybdenum/tungsten-based electrocatalysts for the electrochemical nitrogen reduction reaction. The fundamental roles of morphology, doping, defects, heterojunction, and coupling regulation in improving electrocatalytic performance are mainly discussed. Besides, some tailoring strategies for enhancing the conversion efficiency of N2 to NH3 over Mo/W-based electrocatalysts are also summarized. Finally, the existing challenges and limitations of N2 fixation are proposed, as well as possible future perspectives, which will provide a platform for further development of advanced Mo/W-based N2 reduction systems." @default.
- W4205787827 created "2022-01-25" @default.
- W4205787827 creator A5002429255 @default.
- W4205787827 creator A5005384003 @default.
- W4205787827 creator A5038255909 @default.
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- W4205787827 creator A5046111523 @default.
- W4205787827 creator A5050720091 @default.
- W4205787827 creator A5063701018 @default.
- W4205787827 creator A5072118264 @default.
- W4205787827 creator A5074169832 @default.
- W4205787827 date "2022-01-01" @default.
- W4205787827 modified "2023-10-08" @default.
- W4205787827 title "Progress in Mo/W-based electrocatalysts for nitrogen reduction to ammonia under ambient conditions" @default.
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