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首页> 外文期刊>Electrochimica Acta >Co nanoparticles coupling induced high catalytic activity of nitrogen doped carbon towards hydrogen evolution reaction in acidic/alkaline solutions
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Co nanoparticles coupling induced high catalytic activity of nitrogen doped carbon towards hydrogen evolution reaction in acidic/alkaline solutions

机译:Co纳米粒子偶联诱导氮掺杂碳的高催化活性呈酸性/碱性溶液中的氢进化反应

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摘要

The development of highly-efficient and noble-metal-free catalysts with low cost and high durability for hydrogen evolution reaction (HER) is of great importance to many energy-related technologies. This work reports that nitrogen-doped carbon coated Co nanoparticles encapsulated in bamboo-like nitrogen-doped carbon nanotubes (Co@NC/B-NCNTs), synthesized by a simple calcination of Co(NO3)(2), melamine and P123, is a promising catalyst for HER in both acidic and alkaline solutions. In acidic solution, the Co@NC/B-NCNTs has the HER onset potential of similar to 0 V and only needs an overpotential of 7 mV to drive the current density of 10 mA cm(-2). Its HER catalytic activity is very close to that of Pt/C. In alkaline solution, its onset potential and overpotential to drive 10 mA cm(-2) are 100 and 182 mV, respectively. Both the values are lower than those of many other catalysts reported. The DFT calculations show electronic coupling between Co nanoparticles and NC layer plays an important role in high catalytic activity of Co@NC/B-NCNTs. The Co nanoparticles can change the charge density distribution of the outer NC layer, affecting its properties for hydrogen adsorption and desorption. Additionally, the pyridinic N in the outer NC layer is calculated to be a promising active site for HER. (C) 2020 Elsevier Ltd. All rights reserved.
机译:具有低成本和高耐久性的高贵金属无金属催化剂的发展对于许多能源相关技术具有重要的重要性。该工作报告说,通过CO(NO 3)(2),三聚氰胺和P123的简单煅烧合成的竹状氮掺杂碳纳米管(CO @ NC / B-NCNT)中包封的氮掺杂碳涂覆的Co纳米颗粒在酸性和碱性溶液中为她提供有前途的催化剂。在酸性溶液中,CO @ NC / B-NCNT具有类似于0V的起始电位,并且仅需要7 MV的过电位以驱动10mA cm(-2)的电流密度。它的催化活性非常接近Pt / c的活性。在碱性溶液中,其发病电位和驱动10mA cm(-2)的过电位分别为100和182mV。值低于报告的许多其他催化剂的值。 DFT计算显示CO纳米颗粒和NC层之间的电子耦合在CO @ NC / B-NCNT的高催化活性中起重要作用。 Co纳米颗粒可以改变外部NC层的电荷密度分布,影响其用于氢吸附和解吸的性质。另外,外部NC层中的吡啶n计算为她的有望的活性位点。 (c)2020 elestvier有限公司保留所有权利。

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