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首页> 外文期刊>RSC Advances >Nickel-cobalt bimetallic sulfide NiCo(2)S(4)nanostructures for a robust hydrogen evolution reaction in acidic media
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Nickel-cobalt bimetallic sulfide NiCo(2)S(4)nanostructures for a robust hydrogen evolution reaction in acidic media

机译:镍 - 钴双金属硫化物Nico(2)S(4)S(4)纳米结构,用于酸性介质中的鲁棒氢进化反应

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摘要

There are many challenges associated with the fabrication of efficient, inexpensive, durable and very stable nonprecious metal catalysts for the hydrogen evolution reaction (HER). In this study, we have designed a facile strategy by tailoring the concentration of precursors to successfully obtain nickel-cobalt bimetallic sulfide (NiCo2S4) using a simple hydrothermal method. The morphology of the newly prepared NiCo(2)S(4)comprised a mixture of microparticles and nanorods, which were few microns in dimension. The crystallinity of the composite sample was found to be excellent with a cubic phase. The sample that contained a higher amount of cobalt compared to nickel and produced single-phase NiCo(2)S(4)exhibited considerably improved HER performance. The variation in the salt precursor concentration during the synthesis of a material is a simple methodology to produce a scalable platinum-free catalyst for HER. The advantageous features of the multiple active sites of cobalt in the CN-21 sample as compared to that for pristine CoS and NiS laid the foundation for the provision of abundant active edges for HER. The composite sample produced a current density of 10 mA cm(-2)at an overpotential of 345 mV. Also, it exhibited a Tafel value of 60 mV dec(-1), which predominantly ensured rapid charge transfer kinetics during HER. CN-21 was highly durable and stable for 30 hours. Electrochemical impedance spectroscopy showed that the charge transfer resistance was 21.88 ohms, which further validated the HER polarization curves and Tafel results. CN-21 exhibited a double layer capacitance of 4.69 mu F cm(-2)and a significant electrochemically active surface area of 134.0 cm(2), which again supported the robust efficiency for HER. The obtained results reveal that our developed NiCo(2)S(4)catalyst has a high density of active edges, and it is a non-noble metal catalyst for the hydrogen evolution reaction. The present findings provide an alternative strategy and an active nonprecious material for the development of energy-related applications.
机译:对于氢进化反应(她)的高效,廉价,耐用且非常稳定的非佛得多金属催化剂的制备存在许多挑战。在这项研究中,我们通过使用简单的水热法定制前体的浓度来定制前体的浓度设计了一种容纳策略。新制备的Nico(2)S(4)的形态包含微粒和纳米棒的混合物,其尺寸为几微米。发现复合样品的结晶度具有高度立方相。与镍生成的单相NicO(2)S(4)相比含有较高量的钴量的样品表现出相当大的性能改善。在合成材料期间盐前体浓度的变化是一种简单的方法,用于制备用于她的可缩放的铂 - 催化剂。与原始COS和NIS相比,CN-21样品中钴在CN-21样品中的多个活性位点的有利特征为她提供了丰富的有源边缘的基础。复合样品在345mV的过电位下产生10 mA cm(-2)的电流密度。此外,它表现出60 mV DEC(-1)的TAFEL值,这主要确保了她们期间的快速电荷转移动力学。 CN-21高度耐用,稳定30小时。电化学阻抗光谱表明,电荷转移电阻为21.88欧姆,进一步验证了她的偏振曲线和TAFEL结果。 CN-21表现出4.69亩˚F厘米(-2)和134.0厘米(2),这再次支持HER鲁棒效率显著电化学活性表面积的双层电容。所得结果表明,我们的发育NiCO(2)S(4)催化剂具有高密度的活性边缘,并且是氢进化反应的非贵金属催化剂。本研究结果提供了一种替代战略和用于开发能源相关应用的积极的非骄傲材料。

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  • 来源
    《RSC Advances》 |2020年第37期|共8页
  • 作者单位

    Mehran Univ Engn &

    Technol Jamshoro 7680 Sindh Pakistan;

    Linkoping Univ Dept Sci &

    Technol Campus Norrkoping SE-60174 Norrkoping Sweden;

    Italian Natl Res Council Inst Microelect &

    Microsyst Sect Bologna Via Piero Gobetti 101 I-40129 Bologna Italy;

    Italian Natl Res Council Inst Microelect &

    Microsyst Sect Bologna Via Piero Gobetti 101 I-40129 Bologna Italy;

    Mehran Univ Engn &

    Technol Jamshoro 7680 Sindh Pakistan;

    Mehran Univ Engn &

    Technol Jamshoro 7680 Sindh Pakistan;

    Chinese Acad Sci Changchun Inst Appl Chem State Key Lab Electroanalyt Chem Changchun Peoples R China;

    Univ Sindh Dr MA Kazi Inst Chem Jamshoro 76080 Sindh Pakistan;

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  • 正文语种 eng
  • 中图分类 化学;
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