...
首页> 外文期刊>Journal of Solid State Chemistry >In situ hydrothermal growth of metallic Co9S8-Ni3S2 nanoarrays on nickel foam as bifunctional electrocatalysts for hydrogen and oxygen evolution reactions
【24h】

In situ hydrothermal growth of metallic Co9S8-Ni3S2 nanoarrays on nickel foam as bifunctional electrocatalysts for hydrogen and oxygen evolution reactions

机译:原位水热量生长金属CO9S8-Ni3S2纳米载体镍泡沫作为氢气和氧气进化反应的双官能电催化剂

获取原文
获取原文并翻译 | 示例
           

摘要

Conductivity and morphology are the two important factors affecting the performance of electrocatalysts. In this article, a facile two-step hydrothermal process was developed to grow Co9S8-Ni3S2 nanoarrays on nickel foam (Co9S8-Ni3S2 NAs/NF). The as-obtained catalyst possessed a novel morphology, in which the Co9S8 nanoneedles were surrounded by Ni3S2 ultrathin nanosheets. The resultant Co9S8-Ni3S2 nanoarrays not only permitted more exposures of active sites but also facilitated the charges and ions transport along the nanoarrays. Moreover, both Co9S8 and Ni3S2 exhibited metallic properties allowed the catalysts with conductivity (metallic conductor vs. semiconductor). Co9S8-Ni3S2 NAs/NF exhibited excellent electrocatalytic activities for both HER and OER in 1.0 M KOH solution. To reach a large current density of 100 mA cm(-2), it only required overpotentials of 204 mV and 346 mV for HER and OER, respectively. After long-term electrolysis, the high activities were still preserved. This work indicates efficient electrocatalysts can be obtained by the rational design of the heterostructure, which sheds some light on the development of noble metal-free electrocatalysts.
机译:电导率和形态是影响电催化剂性能的两个重要因素。在本文中,开发了一种容易的两步水热过程以在镍泡沫上生长CO9S8-NI3S2纳米阵列(CO9S8-NI3S2 NAS / NF)。作为所得催化剂具有新的形态,其中CO9S8纳尼纳米氏菌被Ni3S2超薄纳米晶片包围。得到的CO9S8-Ni3S2纳米载体不仅允许更多的活性位点暴露,而且还促进了沿纳米阵列的电荷和离子传输。此外,CO9S8和Ni3S2均表现出金属性能,使催化剂具有导电性(金属导体与半导体)。 CO9S8-NI3S2 NAS / NF在1.0M KOH溶液中表现出优异的电催化活性。为了达到100 mA cm(-2)的大电流密度,它仅为她和OER分别需要204 mV和346 mV的过电位。在长期电解后,仍然保留了高活性。这项工作表明,有效的电催化剂可以通过异质结构的理性设计来获得,这揭示了贵金属电催化剂的发育。

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