Electrochemical oxygen evolution reaction catalyzed by a novel nickel-cobalt-fluoride catalyst

Chemical Communications : Chem Comm
Yunzhuo XueLigang Feng

Abstract

A nanostructured nickel and cobalt fluoride catalyst is constructed by a facile strategy carried out in a mixture of ionic liquids under microwave irradiation followed by low temperature thermal-annealing. It is a novel and robust material among the non-noble metal catalysts towards the oxygen evolution reaction in water electrolysis.

References

Mar 12, 2008·Inorganic Chemistry·Theodore A BetleyDaniel G Nocera
Apr 25, 2014·Journal of the American Chemical Society·Kyoungsuk JinKi Tae Nam
Feb 2, 2012·The Journal of Physical Chemistry Letters·Youngmin LeeYang Shao-Horn
Nov 26, 2015·Science Advances·Jintao ZhangLiming Dai
Jan 14, 2017·Chemical Society Reviews·Nian-Tzu SuenHao Ming Chen

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Citations

Aug 21, 2018·Chemical Communications : Chem Comm·Jia-Ming YeJian-Bo He
Mar 2, 2019·Chemical Communications : Chem Comm·Liming ChenKai Jiang
Mar 9, 2019·Chemical Communications : Chem Comm·Boopathi SidhureddyAicheng Chen
Jul 18, 2019·Chemical Communications : Chem Comm·Lei ZhongLigang Feng
Sep 3, 2019·Chemical Communications : Chem Comm·Xudong YangLigang Feng
Jun 12, 2020·Chemical Communications : Chem Comm·Hui LiuLigang Feng
Jul 22, 2020·Chemical Communications : Chem Comm·Kévin LemoineNikolay Kornienko
Aug 24, 2019·Chemical Communications : Chem Comm·Chengzhe ZhangLigang Feng
Dec 7, 2019·Chemical Communications : Chem Comm·Mukesh SharmaKusum K Bania
Feb 15, 2020·Chemical Science·Kévin LemoineNikolay Kornienko
Jan 16, 2021·Journal of Colloid and Interface Science·Meijuan YuanHuan Pang

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Methods Mentioned

BETA
scanning electron microscopy
electron diffraction

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