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首页> 外文期刊>Journal of Electroceramics >Microwave solvothermal synthesis of mixed pine tree seed-like/disc-shaped microstructures of MnOx (x = 4/3 and 1) with high specific capacitance for electrochemical capacitors
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Microwave solvothermal synthesis of mixed pine tree seed-like/disc-shaped microstructures of MnOx (x = 4/3 and 1) with high specific capacitance for electrochemical capacitors

机译:微波溶剂热合成高比电容的MnOx(x = 4/3和1)的混合松树种子状/盘状微结构

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摘要

The mixed pine tree seed-like/disc-shaped microstructures of MnOx (x = 4/3 and 1) were synthesized using a simple microwave-assisted solvothermal synthesis and heat treatment under N2 atmosphere (heating rate 5 °C/min), without the need for carbon composite. This new mixed morphology showed high specific capacitance, as measured by the cyclic voltammetry (182 F g−1 at 1 mV s−1) and by the constant galvanostatic charge-discharge cycling (195 F g−1 at 0.1 A g−1). During the cycling process the specific capacitance of the material increased, which was caused by the partial electrochemical oxidation of the major phase Mn3O4 (x = 4/3) to MnO2 in a neutral electrolyte of 1 M Na2SO4. According to the galvanostatic charge-discharge cycling tests at 1 A g−1, this material also showed good capacitance retention for over 1000 cycles. MnOx synthesized herein can thus be a good candidate for the electrode material for electrochemical capacitors.
机译:MnOx(x = 4/3和1)的混合的松树种子状/盘状微观结构是通过简单的微波辅助溶剂热合成和N2气氛(升温速率5°C / min)进行热处理而合成的需要碳复合材料。这种新的混合形态显示出高的比电容,这是通过循环伏安法(1 mV s-1时为182 F g-1)和恒定恒电流充放电循环(0.1 A g-1时为195 F g-1)测得的。 。在循环过程中,材料的比电容增加,这是由于在1M Na2SO4的中性电解液中主相Mn3O4(x = 4/3)部分电化学氧化成MnO2所致。根据在1 A g-1下的恒电流充放电循环测试,这种材料还显示出超过1000次循环的良好电容保持率。因此,本文合成的MnOx可以用作电化学电容器电极材料的良好候选者。

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  • 来源
    《Journal of Electroceramics》 |2015年第4期|111-119|共9页
  • 作者单位

    Department of Chemistry Faculty of Science Mahidol University">(1);

    Department of Materials Science and Engineering Yonsei University">(3);

    Department of Materials Science and Engineering Yonsei University">(3);

    Department of Chemistry Faculty of Science Mahidol University">(1);

    Center of Sustainable Energy and Green Materials and Center of Excellence for Innovation in Chemistry Faculty of Science Mahidol University">(2);

    Department of Chemistry Faculty of Science Mahidol University">(1);

    Center of Sustainable Energy and Green Materials and Center of Excellence for Innovation in Chemistry Faculty of Science Mahidol University">(2);

    Department of Materials Science and Engineering Yonsei University">(3);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Manganese oxides; Microwave-assisted solvothermal synthesis; Electrochemical capacitors;

    机译:锰氧化物;微波辅助溶剂热合成;电化学电容器;

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