Engineering interfacial coupling between 3D net-like Ni 3 (VO 4 ) 2 ultrathin nanosheets and MoS 2 on carbon fiber cloth for boostinghydrogen evolution reaction

The use of cheap and efficient electrocatalyst for the production of hydrogen is the key to solving the current energy crisis. Herein, we used a two-step hydrothermal process to fabricate noble-metal-free 3D net-like Ni (VO ) ultrathin nanosheets coupled with MoS @CFC interface. Unlike the tradition...

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Veröffentlicht in:Journal of colloid and interface science 2022-04, Vol.611, p.336
Hauptverfasser: Xing, Yupeng, Zhao, Gang, Qiu, Shipeng, Hao, Shuhua, Huang, Jinzhao, Ma, Wenxuan, Yang, Peizhi, Wang, Xiaoke, Xu, Xijin
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Sprache:eng
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Zusammenfassung:The use of cheap and efficient electrocatalyst for the production of hydrogen is the key to solving the current energy crisis. Herein, we used a two-step hydrothermal process to fabricate noble-metal-free 3D net-like Ni (VO ) ultrathin nanosheets coupled with MoS @CFC interface. Unlike the traditional two-dimensional composite materials, Ni (VO ) ultrathin nanosheets intersect with MoS nanosheets grown on CFC in a 3D net-like structure (Ni (VO ) /MoS @CFC). Due to the mutual combination of structures and the interfacial coupling cooperation effect between Ni (VO ) nanosheet and MoS @CFC, the catalytically active area was expanded, and the intrinsic activity toward HER was significantly improved. Ni (VO ) /MoS @CFC showed high activity at the industrial temperature (75 °C), with an overpotential of 77 mV (10 mA/cm ) and a 65 mV/dec Tafel slope. This material showed good stability at 0.5 M H SO . This work provides a heterostructure scheme for the construction of a novel noble metal-free electrocatalyst to promote hydrogen evolution reaction.
ISSN:1095-7103
DOI:10.1016/j.jcis.2021.12.100