首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Boosting hydrogen evolution performance by using a plasma-sputtered porous monolithic W2C@WC1-x/Mo film electrocatalyst
【24h】

Boosting hydrogen evolution performance by using a plasma-sputtered porous monolithic W2C@WC1-x/Mo film electrocatalyst

机译:通过使用等离子体溅射多孔整体W2C @ WC1-X / Mo膜电催化剂来提高氢气进化性能

获取原文
获取原文并翻译 | 示例
       

摘要

The establishment of an efficient and economic means of producing hydrogenviaelectrocatalytic water-splitting will facilitate the extensive commercialization of fuel cells, and the round-the-clock model of electrocatalytic hydrogen production will alleviate the intermittency issue associated with sustainable energy sources. To enable this feature of renewable hydrogen energy, the key point is to develop cheap, large-scale and high-performance hydrogen evolution electrocatalysts as an alternative to noble metals. Here, a simple and robust physically sputtering strategy is reported to massively prepare a porous and defect-enriched W2C@WC(1-x)film electrocatalyst on carbon cloth (CC) in a W, C and Ar ion plasma atmosphere. The preferential re-sputtering mechanism promotes the loss of activated W and C ions in plasma and extracts more C from plasma, resulting in the ultimate formation of a defective W2C@WC(1-x)film. The ratio of W2C to WC(1-x)increased and the particle size decreased when additional nano-scale thickness Mo sublayers were further incorporated. A monolithic and porous W2C@WC1-x/Mo multilayer film as a binder-free electrocatalyst on flexible CC is created. It exhibits excellent HER performance with a low overpotential of 58 mVvs.RHE to drive a current density of -10 mA cm(-2), a low Tafel slope of 41 mV dec(-1)and over 6 days of long-term running stability in 0.5 M H(2)SO(4)solution. It outperforms most of the recently reported outstanding non-noble metal electrocatalysts. This work sheds light on a new route to regulate the tungsten-carbide catalyst morphology and composition with an aim to boost its HER activity.
机译:建立高效和经济的生产氢化氢催化水分解的手段将促进燃料电池的广泛商业化,电催化氢气产量的圆形模型将减轻与可持续能源相关的间歇性问题。为了使可再生氢能量的这种特征,关键点是开发廉价,大规模和高性能的氢气进化电催化剂,作为贵金属的替代品。这里,据报道,在W,C和Ar离子等离子体大气中大量地制备碳布(CC)上的多孔和缺陷富含W2C @ WC(1-X)薄膜电催化剂的简单且稳健的物理溅射策略。优先的重新溅射机构促进血浆中活化的W和C离子的损失,并从等离子体中提取更多C,导致缺陷W2C @ WC(1-X)膜的最终形成。当进一步掺入额外的纳米尺度厚度莫层子层时,W2C至WC(1-x)的比例增加,粒度降低。产生作为无柔性CC的无粘合剂电催化剂的单片和多孔W2C @ WC1-X / Mo多层膜。它表现出优异的性能,具有58 MVVS.RHE的低过电位,以驱动电流密度-10 mA cm(-2),41 MV DEC(-1)的低TAFEL斜率,长期运行超过6天0.5mH(2)所以(4)溶液中的稳定性。它优于最近报告的优秀非贵金属电催化剂。这项工作揭示了一种新的途径来调节碳化钨催化剂形态和组成,以提高其活动。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号