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Revolutionizing Energy Evolution: SnS-Sn2S3 Layered Structures As Exceptional Electrocatalytic Materials for H2 and O2 Generation

Materials science and engineering B, Solid-state materials for advanced technology/Materials science & engineering B, Solid-state materials for advanced technology(2024)

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摘要
In this paper, we prepared the SnS-Sn2S3 layered structure using the in -situ solvothermal method for hydrogen evolution (HER) and oxygen evolution reaction (OER). XRD and HRTEM confirm the successful synthesis of the orthorhombic crystal structure of the SnS-Sn2S3. Further, SEM images demonstrate the layered shape of the SnSSn2S3 nanostructure, promoting the formation of more active sites on the surface for better electrocatalytic activities. Interestingly, during OER investigation, the SnS-Sn2S3 catalyst depicts an overpotential of 359 mV (10 mA cm -2) and a Tafel slope of 90.1 mV dec-1. However, during HER investigation, the SnS-Sn2S3 catalyst describes an overpotential of 162 mV (-10 mA cm -2) and a Tafel slope of 107.6 mV dec-1. Moreover, the SnS-Sn2S3 catalyst unveils superb stability for 2.3 h at 10 mA cm -2 for OER and 4.0 h at -10 mA cm -2 for HER. The OER and HER reaction mechanisms were also discussed to explore the kinetics rate of SnS-Sn2S3 catalyst.
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关键词
p-n junction formation,Nanolayer morphology,Hydrogen and oxygen evolution reactions,Excellent stability
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