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通过掺杂过渡金属离子和与还原氧化石墨烯复合来增强镍锰氧化物的电化学性能。

Augmenting the electrochemical performance of NiMnO by doping of transition metal ions and compositing with rGO.

作者信息

Sandhiya M, Subramani K, Sathish M

机构信息

Electrochemical Power Sources (ECPS) Division, CSIR-Central Electrochemical Research Institute, Karaikudi 630003, Tamilnadu, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

Electrochemical Power Sources (ECPS) Division, CSIR-Central Electrochemical Research Institute, Karaikudi 630003, Tamilnadu, India.

出版信息

J Colloid Interface Sci. 2021 Sep 15;598:409-418. doi: 10.1016/j.jcis.2021.04.023. Epub 2021 Apr 8.

Abstract

The transition metal ions (TMIs) such as Co and Zn doped NiMnO (NMO)/rGO nanocomposite synthesized by facile sol-gel method was used for the fabrication of supercapacitor. The presence of metal ions in the nanocomposite was confirmed by X-ray photoelectron spectroscopy (XPS) and high resolution transmission electron microscope (HR-TEM) mapping techniques. The fabricated electrode showed high specific capacitance of 710 F/g which was 3-fold higher than NMO (254 F/g). The addition of RGO in the nanocomposite increased the cycle stability of TMIs doped NMO significantly from 51 to 91%. In addition, the symmetric supercapacitor (SSC) fabricated using TMIs doped NMO/rGO nanocomposite with 3.5 M KOH as an electrolyte delivered a maximum energy density of 43 Wh/kg and power density of 10 kW/kg. Furthermore, the SSC device retained 90% of capacitance retention over 10,000 cycles with coulombic efficiency of 99% at 5 A/g. These result suggested that the TMIs doped NMO/rGO nanocomposite electrode is a promising material for high-energy supercapacitors.

摘要

通过简便的溶胶 - 凝胶法合成的钴和锌等过渡金属离子(TMIs)掺杂的NiMnO(NMO)/rGO纳米复合材料被用于超级电容器的制备。通过X射线光电子能谱(XPS)和高分辨率透射电子显微镜(HR-TEM)映射技术证实了纳米复合材料中金属离子的存在。制备的电极显示出710 F/g的高比电容,这比NMO(254 F/g)高3倍。在纳米复合材料中添加RGO显著提高了TMIs掺杂NMO的循环稳定性,从51%提高到91%。此外,以3.5 M KOH作为电解质,使用TMIs掺杂NMO/rGO纳米复合材料制备的对称超级电容器(SSC)的最大能量密度为43 Wh/kg,功率密度为10 kW/kg。此外,SSC器件在10000次循环中保持了90%的电容保持率,在5 A/g时库仑效率为99%。这些结果表明,TMIs掺杂NMO/rGO纳米复合电极是一种有前途的高能量超级电容器材料。

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