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首页> 外文期刊>Nanotechnology >Boron triggers the phase transformation of MoxC (alpha-MoC1-x/beta-Mo2C) for enhanced hydrogen production
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Boron triggers the phase transformation of MoxC (alpha-MoC1-x/beta-Mo2C) for enhanced hydrogen production

机译:硼触发MOXC(α-MOC1-X / BETA-MO2C)的相变,用于增强氢气生产

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摘要

As highly efficient non-precious metal-based catalysts for the hydrogen evolution reaction (HER), molybdenum carbides have attracted much attention over the phase and structure modification for the improvement of HER performances. In this work, a novel strategy is proposed to modulate phases of molybdenum carbides by boron doping, so that the HER performances can be well controlled. After B-doping, the HER activity of the as-prepared B30 catalyst is significantly enhanced with a much smaller Tafel slope of 78 mV dec(-1) than that of the blank one (134 mV dec(-1)), which originates from the increased amount of active sites, enhanced turnover frequency of each active site and reduced electron transfer resistance. Moreover, this work could broaden our view of phase regulation and provide more possible perspectives for the application in other fields.
机译:作为高效的非珍贵金属基催化剂用于氢进化反应(她),碳化物在碳化钼上吸引了对阶段和结构改性的关注,以改善她的性能。 在这项工作中,提出了一种新的策略来调节硼掺杂的钼碳化阶段,因此她的性能可以很好地控制。 在B掺杂后,她的AS制备的B30催化剂的活性显着增强,少于78 mV DEC(-1)的较小的TAFEL斜率而不是坯料(134mV(-1)),这起源于 从增加的活性网站量增加,增强每个有源部位的周转频率和减少的电子传递阻力。 此外,这项工作可以扩大我们对阶段监管的看法,并为其他领域的应用提供更多可能的观点。

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