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作 者:Zhi Cai Mingyuan Xu Yanhong Li Xinyan Zhou Kexin Yin Lidong Li Binbin Jia Lin Guo Hewei Zhao
机构地区:[1]School of Chemistry,Beijing Advanced Innovation Center for Biomedical Engineering,Beihang University,Beijing,China [2]School of Physics,Beihang University,Beijing,China [3]Key Laboratory of Inorganic Nonmetallic Crystalline and Energy Conversion Materials,College of Materials and Chemical Engineering,China Three Gorges University,Yichang,Hubei,China
出 处:《Carbon Energy》2024年第9期210-220,共11页碳能源(英文)
基 金:This work was supported by the National Natural Science Foundation of China(52073008,52272181);the China Postdoctoral Science Foundation(2023T160036).
摘 要:The dynamic surface self-reconstruction behavior in local structure correlates with oxygen evolution reaction(OER)performance,which has become an effective strategy for constructing the catalytic active phase.However,it remains a challenge to understand the mechanisms of reconstruction and to accomplish it fast and deeply.Here,we reported a photo-promoted rapid reconstruction(PRR)process on Ag nanoparticle-loaded amorphous Ni-Fe hydroxide nanosheets on carbon cloth for enhanced OER.The photogenerated holes generated by Ag in conjunction with the anodic potential contributed to a thorough reconstruction of the amorphous substrate.The valence state of unsaturated coordinated Fe atoms,which serve as active sites,is significantly increased,while the corresponding crystalline substrate shows little change.The different structural evolutions of amorphous and crystalline substrates during reconstruction lead to diverse pathways of OER.This PRR utilizing loaded noble metal nanoparticles can accelerate the generation of active species in the substrate and increase the electrical conductivity,which provides a new inspiration to develop efficient catalysts via reconstruction strategies.
关 键 词:AG AMORPHOUS Ni-Fe hydroxide OER photo-promoted rapid reconstruction
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