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Nanoporous transition metal sulfide (Cd-CuS) active electrode material for electrochemical energy storage device

机译:用于电化学能量存储装置的纳米孔过渡金属硫化物(CD-CUS)有源电极材料

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摘要

Electrochemical energy storage devices are today's need for present and future utility, where high energy and power density are combined in the same material. Supercapacitors offer high energy density at high charge-discharge rates. Transition metal sulfides have been tried as a new type of electrode materials for supercapacitor, and good performance has been proved. Cadmium-doped CuS nanostructures have been prepared via a sample hydrothermal process at 130 °C. Nanocomposites of cadmium-doped CuS have been the focus of intensive study due to their potential applications in diverse fields. The nanostructures were characterized by XRD, FTIR, SEM/EDS, and TEM. The XRD pattern reveals that the Cd nanoparticle-incorporated CuS shows crystallite nature, and crystallinity increases with the addition of cadmium on CuS. Electrochemical analysis was performed using a 2M KOH electrolyte in the technique called CV and EIS study. Cd-CuS exhibits hexagonal architecture and the specific capacitance is calculated as 458 F g~(-1) at 5 mV s~(-1) scan rate. The high utility of pseudocapaci-tive Cd-CuS is achieved only in its highest doping concentration of cadmium on CuS. Hence, this type of electrode material may get wide utility range in future energy storage devices.
机译:电化学能量存储装置今天需要当前和未来的效用,其中高能量​​和功率密度在相同的材料中组合。超级电容器以高电荷放电速率提供高能量密度。过渡金属硫化物已被尝试作为超级电容器的新型电极材料,并证明了良好的性能。通过在130℃下通过样品水热法制备浓度的CUS纳米结构。镉掺杂CU的纳米复合材料是由于其在不同领域的潜在应用而导致的密集研究的重点。纳米结构的特征在于XRD,FTIR,SEM / EDS和TEM。 XRD图案显示CD纳米粒子掺入的CU显示微晶性质,结晶度随着CU上的加入镉而增加。在称为CV和EIS研究的技术中使用2M KOH电解质进行电化学分析。 CD-CU呈现六边形架构,特定电容以5mV S〜(-1)扫描速率计算为458 f g〜(-1)。 Pseudocapaci-Tive CD-CU的高效用仅在其CU上的最高掺杂浓度上实现。因此,这种类型的电极材料可以在未来的能量存储装置中获得宽泛的实用范围。

著录项

  • 来源
    《Journal of materials science》 |2020年第2期|983-993|共11页
  • 作者单位

    Department of Physics Annamalai University Chidambaram India;

    Department of Physics Annamalai University Chidambaram India;

    Thiru Kolanjiappar Govt. Arts and Science College Virudhachalam India;

    Department of Physics Annamalai University Chidambaram India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:21:41

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