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Wrinkled Ni-doped Mo2C coating on carbon fiber paper: An advanced electrocatalyst prepared by molten-salt method for hydrogen evolution reaction

机译:碳纤维纸上的皱纹Ni掺杂MO2C涂层:通过熔融盐法制备用于氢化反应的先进电催化剂

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摘要

Synthesis of affordable electrocatalysts with high efficiency at low cost is crucial for large-scale water splitting. Molybdenum carbide (Mo2C) has been suggested to be a promising alternative to noble metal based electrocatalysts for water splitting. In this paper, we fabricated a nanotextured coating of wrinkled Ni-doped Mo2C on carbon fiber paper (CFP) from Ni, Mo and carbon black (CB) via a molten salt method. Such a novel electrocatalyst, denoted as Ni-Mo2CCB/CFP, shows an overpotential of 121.4, 209.3 and 426.4 mV to achieve a current density of 10, 20 and 50 mA cm(-2) respectively in acidic medium. The hydrogen evolution reaction (HER) performance of other as-prepared CFP based electrodes (bare CFP, Mo2C/CFP, Mo2CCB/CFP, Ni-Mo2C/CFP and NiCx/CFP) also tested. We found that the addition of carbon black and the doping of Ni could significantly improve the electrocatalytic performance of Mo2C/CFP in terms of overpotential, Tafel slope and exchange current density. This work demonstrates a facile and scalable route using molten salt method for the synthesis of high-performance electrocatalysts from non-precious compounds on carbon materials. (C) 2019 Elsevier Ltd. All rights reserved.
机译:以低成本合成高效率的实惠电催化剂对大型水分裂的关键是至关重要的。已经提出碳化钼(MO2C)是对水分裂的贵族金属电催化剂的有希望的替代品。在本文中,我们通过熔融盐的方法制作镍皱掺杂的Mo2C的碳纤维纸从镍,钼(CFP)和炭黑(CB)一个纳米纹理的涂层。这种新型电催化剂表示为Ni-Mo2CCB / CFP,显示出121.4,209.3和426.4mV的过电位,以达到酸性介质中的电流密度为10,20和50mA(-2)。还测试了其他以制备的CFP电极(裸CFP,MO2C / CFP,MO2CCB / CFP,NI-MO2C / CFP和NICX / CFP)的氢进化反应(其)性能。我们发现添加炭黑和Ni的掺杂可以在过电位,Tafel坡度和交换电流密度方面显着提高MO2C / CFP的电催化性能。这项工作证明了一种使用熔融盐法,用于合成来自碳材料上的非珍贵化合物的高性能电催化剂的熔融盐法。 (c)2019 Elsevier Ltd.保留所有权利。

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