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Facile in Situ Transformation of NiOOH into MOF-74(Ni)/NiO OH Heterogeneous Composite for Enchancing Electrocatalytic Methanol Oxidation.


ABSTRACT: A new MOF-74(Ni)/NiOOH heterogeneous composite was synthesized via NiOOH microsphere precursor. The electrocatalytic methanol oxidation reactions' (MOR) performance was assessed. The as-prepared MOF-74(Ni)/NiOOH exhibited excellent activity with high peak current density (27.62 mA·cm-2) and high mass activity (243.8 mA·mg-1). The enhanced activity could be a result of the synergistic effect of the MOF-74(Ni)/NiOOH heterocomposite providing more exposed active sites, a beneficial diffusion path between the catalyst surface and electrolyte, and improved conductivity, favorable for improving MOR performance.

SUBMITTER: Zhou WQ 

PROVIDER: S-EPMC9000767 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Facile in Situ Transformation of NiOOH into MOF-74(Ni)/NiO OH Heterogeneous Composite for Enchancing Electrocatalytic Methanol Oxidation.

Zhou Wei-Qun WQ   Xi Ben-Jun BJ   Chang Xi-Wen XW   Wang Bin B   Wu Xue-Qian XQ   Li Shuang S   Wu Ya-Pan YP   Li Dong-Sheng DS  

Molecules (Basel, Switzerland) 20220325 7


A new MOF-74(Ni)/NiOOH heterogeneous composite was synthesized via NiOOH microsphere precursor. The electrocatalytic methanol oxidation reactions' (MOR) performance was assessed. The as-prepared MOF-74(Ni)/NiOOH exhibited excellent activity with high peak current density (27.62 mA·cm<sup>-2</sup>) and high mass activity (243.8 mA·mg<sup>-1</sup>). The enhanced activity could be a result of the synergistic effect of the MOF-74(Ni)/NiOOH heterocomposite providing more exposed active sites, a benef  ...[more]

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