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内包铜增强了氮掺杂碳纳米管的析氢电催化活性。

Encased Copper Boosts the Electrocatalytic Activity of N-Doped Carbon Nanotubes for Hydrogen Evolution.

机构信息

College of Chemistry and Materials Science, Sichuan Normal University , Chengdu 610068, China.

CAS Key Laboratory of Molecular Nanostructure and Nanotechnology, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences , 2 North First Street, Zhongguancun, Beijing 100190, China.

出版信息

ACS Appl Mater Interfaces. 2017 Oct 25;9(42):36857-36864. doi: 10.1021/acsami.7b11748. Epub 2017 Oct 12.

Abstract

Nitrogen (N)-doped carbons combined with transition-metal nanoparticles are attractive as alternatives to the state-of-the-art precious metal catalysts for hydrogen evolution reaction (HER). Herein, we demonstrate a strategy for fabricating three-dimensional (3D) Cu-encased N-doped carbon nanotube arrays which are directly grown on Cu foam (Cu@NC NT/CF) as a new efficient HER electrocatalyst. Cu nanoparticles are encased here instead of common transition metals (Fe, Co, or Ni) for pursuing a well-controllable morphology and an excellent activity by taking advantage of its more stable nature at high temperature and in acidic or alkaline electrolyte. It is discovered that metallic Cu exhibits strong electronic modulation on N-doped carbon to boost its electrocatalytic activity for HER. Such a nanostructure not only offers plenty of accessible highly active sites but also provides a 3D conductive open network for fast electron/mass transfer and facilitates gas escape for prompt mass exchange. As a result, the Cu@NC NT/CF electrode exhibits superior HER performance and durability, outperforming most of the reported M@NC materials. Furthermore, the etching experiments together with X-ray photoelectron spectroscopy (XPS) analysis reveal that the electronic modulation from encased Cu significantly enhances the HER activity of N-doped carbon. These findings open up opportunities for exploring other Cu-based nanomaterials as efficient electrocatalysts and understanding their catalytic processes.

摘要

氮(N)掺杂碳与过渡金属纳米粒子结合,作为析氢反应(HER)中最先进的贵金属催化剂的替代品具有吸引力。在此,我们展示了一种制备三维(3D)Cu 封装氮掺杂碳纳米管阵列的策略,该阵列直接生长在 Cu 泡沫(Cu@NC NT/CF)上,作为一种新的高效 HER 电催化剂。在这里,Cu 纳米粒子被封装,而不是常见的过渡金属(Fe、Co 或 Ni),以利用其在高温和酸性或碱性电解质中更稳定的性质来追求更好的可控形态和优异的活性。研究发现,金属 Cu 对 N 掺杂碳具有很强的电子调制作用,可提高其 HER 的电催化活性。这种纳米结构不仅提供了大量可访问的高活性位点,还提供了一个 3D 导电开放网络,以实现快速的电子/质量转移,并促进气体逸出,从而实现快速的质量交换。因此,Cu@NC NT/CF 电极表现出优异的 HER 性能和耐久性,超过了大多数报道的 M@NC 材料。此外,刻蚀实验和 X 射线光电子能谱(XPS)分析表明,封装 Cu 的电子调制显著增强了 N 掺杂碳的 HER 活性。这些发现为探索其他基于 Cu 的纳米材料作为高效电催化剂以及理解其催化过程提供了机会。

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