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首页> 外文期刊>Nanotechnology >Effect of the amount of nickel sulphide, molybdenum disulphide and carbon nanosupport on a Tafel slope and overpotential optimization
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Effect of the amount of nickel sulphide, molybdenum disulphide and carbon nanosupport on a Tafel slope and overpotential optimization

机译:硫化镍,二硫化钼和碳纳米菌对Tafel坡度的影响和过电优化的影响

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摘要

A Tafel slope of 40 mV dec(-1) and a very small overpotential were measured for our NiSMoS(2)G nanocatalyst, prepared using a scalable approach, and consisting of NiS nanoparticles covered by a stabilizing coating of MoS2 nanosheets, on unsophisticated and easy to obtain physical exfoliated graphite. A careful study proves that it is possible to improve the Tafel slope and the overpotential through the optimization of amounts of the different components. The conductive nanocarbon network, the highly active to charge accumulation of NiS nanoparticles and the coupling with MoS2 nanosheets, exposing a large number of edges, result in a very high hydrogen production rate of 1.63 ml cm(-2) h(-1) at -0.12 V, measured by means of an on-line mass spectrometry analysis.
机译:针对我们的NIMSOS(2)G纳米催化剂测量40 mV DEC(-1)和非常小的过电位的TAFEL斜率,并使用可扩展方法制备,并由由MOS2纳米晶片稳定涂层覆盖的NIS纳米颗粒组成,在不成熟的和 易于获得物理剥离的石墨。 仔细研究证明,通过优化不同组件的量,可以改善Tafel斜率和过电位。 导电纳米碳网,NIS纳米粒子的高度活性充电和与MOS2纳米片的耦合,暴露大量边缘,导致非常高的氢气产生速率为1.63ml cm(-2)H(-1) -0.12 V,通过在线质谱分析测量。

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