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首页> 外文期刊>Catalysis science & technology >Constructing a 1T-MoS2/Ni3S4 heterostructure to balance water dissociation and hydroxyl desorption for efficient hydrogen evolution
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Constructing a 1T-MoS2/Ni3S4 heterostructure to balance water dissociation and hydroxyl desorption for efficient hydrogen evolution

机译:Constructing a 1T-MoS2/Ni3S4 heterostructure to balance water dissociation and hydroxyl desorption for efficient hydrogen evolution

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摘要

Alkaline water electrolysis is a viable technique for large-scale hydrogen production. The metallic polymorph of molybdenum disulfide (1T-MoS2) has been proven to be an efficient electrocatalyst for the hydrogen evolution reaction (HER) in acidic electrolytes. However, its catalytic activity under alkaline conditions is substantially lower than under acidic ones. This is due to the sluggish water adsorption and dissociation dynamics. In this study, a 1T-MoS2/Ni3S4 heterostructure was constructed by vertically growing 1T-MoS2 nanosheets on Ni3S4 nanosheets. Experiments and theoretical calculations demonstrated that electrons transfer from Ni3S4 to 1T-MoS2 at the heterointerfaces. This electron re-arrangement balances the energy between water dissociation and hydroxyl desorption on the Ni sites and optimizes the free energy of hydrogen adsorption (ΔGH*) on the Mo-edge sites. This synergistic effect accelerates both water splitting on the Ni site and hydrogen adsorption/desorption on the Mo-edge site at the heterointerface. Consequently, the 1T-MoS2/Ni3S4 heterostructure shows significantly boosted alkaline HER activity, with a small overpotential of 44 mV at 10 mA cm-2 and a Tafel slope of 43 mV dec-1 in 1 M KOH. In particular, at high current densities ( j >100 mA cm-2), it outperforms state-of-the-art Pt/C.
机译:碱性水电解是一个可行的技术大规模生产氢。变形的二硫化钼(1 t-mos2)被证明是一种有效的electrocatalyst析氢反应(她)酸性的电解质。在碱性条件下活动大大低于在酸性的。是由于吸附和缓慢的水解离动力学。1 t-mos2 / Ni3S4异质结构是由垂直增长1 t-mos2 nanosheets Ni3S4nanosheets。计算表明,电子转移从Ni3S4到1 t-mos2异质结面。这个电子re-arrangement平衡能量分离水和羟基之间解吸倪免费网站和优化能源的氢吸附(ΔGH *)Mo-edge网站。加速水分裂倪网站和氢吸附/解吸Mo-edge网站在异质结面。1 t-mos2 / Ni3S4异质结构显示显著提高了碱性她活动,小过电压的44个mV 10马cm-2和塔菲尔斜率的43个mV 1 M KOH的古老文明。在高电流密度(j > 100 mA cm-2)优于先进的Pt / C。

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