Journal
CHEMICAL COMMUNICATIONS
Volume 55, Issue 31, Pages 4570-4573Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c9cc01433k
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Funding
- NSF of China [21673127, 21805165, 21671119, 51572152, 51502155]
- NSRF of Hubei Provincial Education Office of China [Q20181203]
- State Key Laboratory of Structural Chemistry, FJIRSM [20170020]
- 111 Project [2018-19-1]
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The development of efficient MOF-based electrocatalysts with good stability to produce hydrogen is a great challenge in the field of sustainable energy conversion. Herein, we introduced a controlled in-situ sulfurization strategy to generate a highly active and stable hybrid catalyst containing good conductive Fe3S4 ultrasmall nanosheets attached on the surface of 3D MIL-53(Fe) for the hydrogen evolution reaction in acidic solutions.
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