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Pulse-electrodeposited nickel phosphide for high-performance proton exchange membrane water electrolysis

机译:用于高性能质子交换膜水电解的脉冲电沉积镍磷化镍

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Ni-P catalysts with various compositions were fabricated by pulse electrodeposition in pursuit of highly efficient and durable hydrogen evolution via proton exchange membrane water electrolysis. Pulse electrodeposition enabled the preparation of a Ni-P catalyst with a high portion of P, thereby conferring acid-resistant properties to the catalyst. Specifically, precise control of the deposition potential made it possible to leach Ni from bulk Ni-P and thus to vary the composition. With greater P incorporation, the catalyst became amorphous. The activity of the as-prepared Ni-P catalysts for the hydrogen evolution reaction (HER) in acidic medium was evaluated by cyclic voltammetry, confirming the strong dependence of the activity on the composition. The Ni-P catalyst with a bulk composition of Ni78P22 exhibited the best HER activity with an overpotential of 105 mV at -10 mA cm(-2). The current density of the single cell with the electrodeposited Ni78P22 cathode and electrodeposited IrO2 anode was 1.31 A cm(-2) at 2.0 V-ce(ll). Compared to reported values for other non-Pt or Pt cathodes for electrolysis, the electrolyzer with the Ni78P22 cathode strongly outperforms the non-Pt cathodes, and the performance is more than a half of that of the Pt cathode. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过脉冲电沉积通过质子交换膜水电解追求具有各种组合物的Ni-P催化剂,通过质子交换膜水电解追求高效耐用的氢气。脉冲电沉积使得具有高部分P的Ni-P催化剂的制备,从而将耐酸性赋予催化剂。具体地,精确地控制沉积电位使得可以从散装Ni-P中浸出Ni,从而可以改变组合物。掺入更大的P掺入,催化剂变得无定形。通过循环伏安法评价用于氢介质反应(她)的AS制备的Ni-P催化剂的活性,确认活性对组合物的强依赖性。具有Ni78P22的块状组合物的Ni-P催化剂在-10mA cm(-2)下具有105mV的过电位,表现出最好的她的活性。用电沉积的Ni78P22阴极和电沉积IRO2阳极的单电池的电流密度为2.0V-Ce(LL)为1.31Acm(-2)。与用于电解的其他非Pt或Pt阴极的报告值相比,具有Ni78P22阴极的电解槽强烈地优于非Pt阴极,并且性能大于Pt阴极的一半。 (c)2019 Elsevier B.v.保留所有权利。

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