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首页> 外文期刊>Nanoscale >Carbon-encapsulated multi-phase nanocomposite of W2C@WC1-x as a highly active and stable electrocatalyst for hydrogen generation
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Carbon-encapsulated multi-phase nanocomposite of W2C@WC1-x as a highly active and stable electrocatalyst for hydrogen generation

机译:Carbon-encapsulated多阶段的纳米复合材料W2C@WC1-x高度活跃的和稳定的electrocatalyst氢代

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摘要

The major challenges related to the activity, stability, and cost of electrocatalysts are being increasingly raised to achieve highly efficient and cost-effective hydrogen generation. Herein, multiphase nanocomposites of W2C@WC1-x encapsulated within graphitic carbon layers were prepared via a facile and effective process of electrical explosion of wires and subsequent heat treatment to serve as a highly active and stable electrocatalyst without any noble metal for hydrogen generation. The single-phase comprising less than 15 nm WC1-x nanoparticles embedded in a lump of amorphous carbon were successfully synthesized via the EEW process in oleic acid used as a carbon source at room temperature. Subsequent heat treatment facilitates the desired phase transition of WC1-x to W2C without the formation of any secondary phases, maintaining the initial particle size and simultaneously eliminating excess amorphous carbon adhered to the nanoparticles. The few graphitic carbon layer-encapsulated nanoparticles with the main W2C phase prepared by this simple method exhibit high efficiency for hydrogen generation with a low overpotential of 240 mV at a current density of 10 mA cm(-2) and a low Tafel slope of 86 mV dec(-1). Moreover, the overpotential is well maintained at a constantly injected current density of 10 mA cm(-2) for 100 h with a low (100)/(i) value of 1.03 ((i): initial overpotential, (100): overpotential after 100 h), demonstrating superior catalytic stability in acidic media. This work proposes and evaluates a facile strategy for the synthesis of highly efficient electrocatalysts based on metal carbides without noble metals.
机译:相关的主要挑战活动,稳定,electrocatalysts被成本实现高效的日益提高和具有成本效益的氢的一代。多相W2C@WC1-x的纳米复合材料封装在石墨碳层准备通过一个简单而有效的过程电的电线和随后的热治疗作为一个高度活跃的和稳定的electrocatalyst没有任何贵金属氢的一代。不到15 nm WC1-x纳米粒子嵌入把成功的无定形碳通过合成油酸EEW过程在室温下作为碳源。后续热处理所需的便利相变WC1-x W2C没有形成的第二阶段,维护同时初始粒径和消除多余的非晶碳坚持纳米粒子。层纳米粒子与主展览W2C阶段由这个简单的方法效率高的氢生成的240 mV过电压低电流密度马10厘米(2)和低塔费尔86 mV的斜率12月(1)。维持在一个不断注入电流马10厘米(2)密度与低100 h(100) /(我)1.03((我):最初的价值过电压,(100):过电压100 h)后,展示优越的催化稳定酸性介质。灵巧的战略高度的综合基于金属的高效electrocatalysts没有高贵的金属碳化物。

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