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首页> 外文期刊>RSC Advances >Mo doped porous Ni-Cu alloy as cathode for hydrogen evolution reaction in alkaline solution
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Mo doped porous Ni-Cu alloy as cathode for hydrogen evolution reaction in alkaline solution

机译:钼掺杂多孔镍铜合金作为阴极在碱性溶液中析氢反应

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摘要

Molybdenum doped porous Ni-Cu cathodes are conveniently prepared by powder metallurgy in this work. The microporous structure of the porous Ni-Cu based cathodes has a certain correlation with the content of molybdenum, which consequently influences the electrocatalytic behavior as electrode materials. Electrocatalytic performance of the prepared cathodes has been investigated by hydrogen evolution reaction in 6.0 mol L-1 KOH solution. It is demonstrated that the Mo doped porous Ni-Cu cathodes exhibit a superior electrocatalytic activity for HER over a binary porous Ni-Cu cathode, among which the porous Ni-Cu with 6.0 wt% Mo shows the highest intrinsic activity and an ascendant stability during HER. Although the porous Ni-Cu (with 9.0 wt% Mo) expresses the highest activity, a gradual decline of the current density for HER in long-term operation is found, which is due to the dissolution of Mo from the porous skeleton in alkaline solution.
机译:在这项工作中,可以通过粉末冶金方便地制备钼掺杂的多孔Ni-Cu阴极。多孔Ni-Cu基阴极的微孔结构与钼的含量具有一定的相关性,因此影响了作为电极材料的电催化性能。通过在6.0 mol L-1 KOH溶液中发生氢气析出反应,研究了所制备阴极的电催化性能。结果表明,Mo掺杂的多孔Ni-Cu阴极对HER的电催化活性优于二元多孔Ni-Cu阴极,其中Mo含量为6.0 wt%的多孔Ni-Cu表现出最高的固有活性和上升过程中的稳定性。她。尽管多孔Ni-Cu(含9.0 wt%的Mo)表现出最高的活性,但在长期运行中发现HER的电流密度逐渐下降,这是由于Mo从多孔骨架中溶解于碱性溶液中。

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