journal article Nov 27, 2023

MOF-on-MOF-Derived Ultrafine Fe2P-Co2P Heterostructures for High-Efficiency and Durable Anion Exchange Membrane Water Electrolyzers

ACS Nano Vol. 17 No. 23 pp. 24070-24079 · American Chemical Society (ACS)
View at Publisher Save 10.1021/acsnano.3c09020
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References
48
[1]
Recent Advances in Electrocatalytic Hydrogen Evolution Using Nanoparticles

Jing Zhu, Ligang Hu, Pengxiang Zhao et al.

Chemical Reviews 10.1021/acs.chemrev.9b00248
[10]
Design of active and stable Co–Mo–Sx chalcogels as pH-universal catalysts for the hydrogen evolution reaction

Jakub Staszak-Jirkovský, Christos D. Malliakas, Pietro P. Lopes et al.

Nature Materials 10.1038/nmat4481
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Details
Published
Nov 27, 2023
Vol/Issue
17(23)
Pages
24070-24079
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Funding
National Natural Science Foundation of China Award: U2002213
Double First Class University Plan Award: C176220200
Science Research Foundation of Yunnan Education Bureau Award: 2023Y0262
Guangxi Key Laboratory of Processing for Non-ferrous Metals and Featured Materials Award: 2022GXYSOF10
Science Foundation of Donghai Laboratory Award: DH-2022KF0314
Cite This Article
Hua Zhang, Anran Chen, Zenghui Bi, et al. (2023). MOF-on-MOF-Derived Ultrafine Fe2P-Co2P Heterostructures for High-Efficiency and Durable Anion Exchange Membrane Water Electrolyzers. ACS Nano, 17(23), 24070-24079. https://doi.org/10.1021/acsnano.3c09020
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