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用于高效析氢反应的碳纤维纸上的自支撑镍掺杂碳化钼纳米花簇

Self-supported nickel-doped molybdenum carbide nanoflower clusters on carbon fiber paper for an efficient hydrogen evolution reaction.

作者信息

Hu Zhihui, Zhang Lei, Huang Juntong, Feng Zhijun, Xiong Qingming, Ye Zhiguo, Chen Zhi, Li Xibao, Yu Zhaoju

机构信息

School of Materials Science and Engineering, Nanchang Hangkong University, Nanchang, Jiangxi Province 330063, P.R. China.

出版信息

Nanoscale. 2021 May 7;13(17):8264-8274. doi: 10.1039/d1nr00169h. Epub 2021 Apr 22.

Abstract

Developing an efficient, stable and low-cost noble-metal-free electrocatalyst for the hydrogen evolution reaction (HER) is an effective way to alleviate the energy crisis. Herein, we report a simple and facile approach to synthesize self-supported Ni-doped MoC via a molten salt method. By optimizing the content of Ni, the concentration of Ni(NO), and the annealing time, self-supported nanoflower-like electrocatalysts composed of ultrathin nanosheets on carbon fiber paper (CFP) can be achieved. Such a fluffy and porous nanoflower-like structure has a large specific surface area, which can expose many active sites, and promote charge transfer; moreover, all of the above is beneficial for improving the HER performance. Density functional theory (DFT) calculations reveal that the doping of Ni leads to a down shift of the value of the d band center (ε), so that the adsorbed hydrogen (H) is easier to desorb from the catalyst surface, thus leading to an enhanced intrinsic catalytic activity of Ni doped MoC based catalysts. As a result, MoC-3 M Ni(NO)/CFP with a nanoflower-like structure prepared at 1000 °C for 6 h exhibits the best electrocatalytic performance for the HER in 0.5 M HSO, with a low overpotential of 56 mV (at j = 10 mA cm) and a Tafel slope (27.4 mV dec) comparable to that of commercial Pt/C (25.8 mV dec). The excellent performance surpasses most of the noble-metal-free electrocatalysts. In addition, the outstanding long-term durability of MoC-3 M Ni(NO)/CFP is demonstrated by showing no obvious fluctuations during 35 h of the HER testing. This work provides a simple and facile strategy for the preparation of nanoelectrocatalysts with high specific surface areas and high catalytic activities, both of which promote an efficient HER.

摘要

开发一种高效、稳定且低成本的无贵金属析氢反应(HER)电催化剂是缓解能源危机的有效途径。在此,我们报道了一种通过熔盐法合成自支撑Ni掺杂MoC的简单易行的方法。通过优化Ni的含量、Ni(NO)的浓度和退火时间,可以制备出由碳纤维纸(CFP)上的超薄纳米片组成的自支撑纳米花状电催化剂。这种蓬松多孔的纳米花状结构具有大的比表面积,能够暴露许多活性位点,促进电荷转移;此外,上述所有因素都有利于提高HER性能。密度泛函理论(DFT)计算表明,Ni的掺杂导致d带中心(ε)值下移,使得吸附的氢(H)更容易从催化剂表面脱附,从而导致Ni掺杂MoC基催化剂的本征催化活性增强。结果,在1000℃下制备6小时的具有纳米花状结构的MoC-3M Ni(NO)/CFP在0.5M HSO中对HER表现出最佳的电催化性能,低过电位为56mV(在j = 10mA cm时),塔菲尔斜率(27.4mV dec)与商业Pt/C(25.8mV dec)相当。优异的性能超过了大多数无贵金属电催化剂。此外,MoC-3M Ni(NO)/CFP在HER测试35小时内无明显波动,证明了其出色的长期耐久性。这项工作为制备具有高比表面积和高催化活性的纳米电催化剂提供了一种简单易行的策略,这两者都促进了高效的HER。

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