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首页> 外文期刊>Electrochimica Acta >Coupled molybdenum carbide and nitride on carbon nanosheets: An efficient and durable hydrogen evolution electrocatalyst in both acid and alkaline media
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Coupled molybdenum carbide and nitride on carbon nanosheets: An efficient and durable hydrogen evolution electrocatalyst in both acid and alkaline media

机译:碳纳米片耦合碳化钼和氮化物:酸和碱性介质中有效且耐用的氢气进化电催化剂

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Electrochemical water splitting by electricity from the renewable power sources is one of the most promising pathways for green and sustainable hydrogen production. The key is to synthesize earth-abundant and noble-metal-free electrocatalysts with outstanding hydrogen evolution reaction (HER) activity and durability in wide-pH electrolytes by simple and cost-effective methods. Herein, we reported a one-step synthesis of uniform, ultrafine molybdenum carbide (Mo2C) and molybdenum nitride (Mo2N) hybrid [together as Mo-2(CN)] inserted carbon nanosheets as efficient electrocatalyst for HER. The assynthesized catalyst showed an excellent HER activity in acid medium, and even superior performance was obtained in the alkaline medium. The optimal Mo-2(CN) annealed at 750 degrees C showed an overpotential of -80 mV at 10 mAcm(-2) and a Tafel slope of 40 mV dec(-1); the former strikingly outperforms commercial 20% Pt/C materials (-112 mV). Moreover, Mo-2(CN) gave an onset voltage of -33mV and overpotential of -202 mV at 100 mA cm(-2) with merely a mass loading of 0.2 mg cm(-2), which are, to date, among the best records for Mo-based catalysts in both media. The nanosheet structure providing large active area and quick charge transfer, and the synergistic effects between Mo2C and Mo2N toward HER are ascribed to the outstanding electrocatalytic activity according to the capacitive current and turnover frequency analysis. The remarkable catalytic activity and operational durability in wide pH ranges guarantee their potential for highly efficient hydrogen production. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过可再生电源的电力分配电化学水分是绿色和可持续氢气生产最有前途的途径之一。关键是通过简单且经济高效的方法将具有优异的氢气进化反应(其)活性和耐久性的氢进化反应(其)活性和耐久性合成地球丰富和贵金属无金属的电催化剂。在此,我们报道了一种均匀,超细钼碳化物(MO2C)和氮化钼(MO2N)杂交液的一步合成作为Mo-2(CN)]插入碳纳米片作为其有效的电催化剂。水合化催化剂在酸性培养基中显示出优异的她的活性,甚至在碱性培养基中获得了优异的性能。在750℃下退火的最佳Mo-2(CN)显示了10mcm(-2)的过电位-80mV,40 mV(-1)的Tafel斜率;前者惊人的优于商业20%Pt / C材料(-112mV)。此外,MO-2(CN)在100mA cm(-2)中产生-33mV和-202mV的过电压,仅是0.2mg cm(-2)的质量负荷,即迄今为止两种媒体中的MO基催化剂的最佳记录。提供大有源区域和快速电荷转移的纳米片结构,以及MO2C和MO2N之间的协同效应根据电容电流和周转频率分析归因于出色的电催化活性。宽pH范围内显着的催化活性和操作耐久性保证了它们对高效氢生产的潜力。 (c)2018年elestvier有限公司保留所有权利。

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