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Environment-Dependent Structural Evolution and Electrocatalytic Performance in N2 Reduction of Mo-Based ZIF-8
期刊文章

Environment-Dependent Structural Evolution and Electrocatalytic Performance in N2 Reduction of Mo-Based ZIF-8

Kai-Yuan Hsiao, Yu-Han Tseng, Chao-Lung Chiang, Yan-De Chen, Yan-Gu LinMing-Yen Lu
ACS Applied Nano Materials, 卷.6(12), 頁碼.10713-10724
06/2023

摘要

electrocatalyst environment-dependent pyrolysis in situ TEM metal−organic framework derivatives molybdenum single atoms nitrogen reduction reaction Materials Science (all)
In this study, we used in situ transmission electron microscopy to probe the structural evolution of Mo-based zeolite imidazole framework-8 (Mo-ZIF-8) under various gaseous environments. Upon pyrolyzing Mo-ZIF-8 under oxidative, inactive, and reductive environments, the formation of Mo-related materials, including Mo 2 C, Mo nanoparticles, Mo nanoclusters, and Mo single atoms (Mo-SAs), is well-controlled to be anchored on the porous N-doped carbon (PNC), and the evolution mechanisms are clearly provided. Furthermore, we discussed the performance of the Mo-related materials/PNC for the electrochemical nitrogen reduction reaction (NRR). Mo-SA/PNC achieves a maximum NH 3 yield rate of 15.34 μg h -1 mg -1 and a Faradic efficiency of 24.03% for NRR at a potential of −0.2 V versus reversible hydrogen electrode. Our findings suggest guidelines for the rational design of the derivatives of metal-based metal-organic frameworks and their feasible application.

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