...
首页> 外文期刊>Advanced Sustainable Systems >Sustainable Hydrogen Production Using Group‐10 Metal Chalcogenides as Low‐Cost Effective Electrocatalysts
【24h】

Sustainable Hydrogen Production Using Group‐10 Metal Chalcogenides as Low‐Cost Effective Electrocatalysts

机译:使用第10族金属硫族化合物作为低成本的电催化剂进行可持续制氢

获取原文
获取原文并翻译 | 示例

摘要

Abstract Clean hydrogen production is crucial to the prospects of the energy transition. Electrochemical water splitting is one of the most promising tools for the sustainable and efficient production of hydrogen. One of the main open challenges is the replacement of precious Pt for electrodes with new materials combining cheapness, robustness to CO poisoning, and fast reaction kinetics. Group‐10 metal chalcogenides represent suitable candidates to address all main open challenges in the quest for alternative materials to pure Pt as electrocatalysts, with the further advantage of the ease of their synthesis as both bulk crystals and nanostructures. All compounds of this class of materials show surface stability, chemical inertness toward CO adsorption, and electrode durability in acidic and alkaline environments. Here, the physicochemical mechanisms ruling hydrogen production with group‐10 metal chalcogenides are focused on by combining surface‐science experiments and theory. Especially, the Tafel slope in Pt3Te4 nanocrystals and NiTe2 nanotubes is as low as 32 and 59 mV dec−1, respectively, making them competitive with state‐of‐the‐art reference materials Pt and Pt/C already in the first implementation. Moreover, the presence of massless Dirac‐cone electrons in many group‐10 metal chalcogenides, with an intrinsically large electron mobility, is naturally beneficial for fast electron transfer, and correspondingly, for fast reaction kinetics. These results pave the way for the advent of this new class of materials in electrocatalysis, and for sustainable hydrogen production through water splitting.
机译:抽象的清洁的氢是至关重要的能源过渡的前景。电化学水分割是其中一个可持续和最有前途的工具高效的生产氢。开放的挑战是珍贵的替代Pt与新材料结合电极便宜,鲁棒性CO中毒,快反应动力学。代表所有主要合适人选来解决开放的挑战在寻求替代方案材料为纯Pt electrocatalysts,进一步缓解他们的优势大部分晶体和合成纳米结构。材料显示表面稳定,化学惰性对CO吸附和电极耐用性在酸性和碱性环境。在这里,物理化学机制的裁决制氢与集团10金属硫属化合物的重点是通过结合表面的科学实验和理论。尤其是Pt3Te4塔费尔斜率纳米晶体和NiTe2纳米管低至3212月,59 mV−1,分别让他们特色艺术与国家竞争优先车道参考材料Pt和Pt / C已经在第一实现。无质量的狄拉克锥应承担的电子在很多组10金属硫属化合物,本质上大电子迁移率,自然是有益的快电子转移,相应地,快速反应动力学。为这个新阶级的出现,他们的材料在电催化作用,可持续氢通过水分裂生产。

著录项

相似文献

  • 外文文献
  • 中文文献
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