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Solvothermal synthesis of shape-controlled manganese oxide materials and their electrochemical capacitive performances

机译:形状控制氧化锰材料的溶剂热合成及其电化学电容性能

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摘要

We present a simple and quick procedure for the one-pot synthesis of manganese oxides under a basic solvothermal condition in the presence of cationic surfactants acting as the template in a 2-butanol/water solution. Three-dimensional spinel-type MnO_2 microspheres composed of small nanoparticles have been fabricated for the first time using our method. Their corresponding electrochemical performances in the applications of supercapacitor electrodes exhibit a good specific capacitance (SC) value of ~190 F/g at 0.5 A/g and excellent SC retention and Coulombic efficiency of ~100% and ~95% after 1000 charge/discharge cycles at 1 A/g, respectively. This suggests its potential applications in energy storage devices. Further, we demonstrate that this solvothermal technique enables the morphological tuning of manganese oxides in various forms such as schists, rods, fibers, and nanoparticles. This work describes a rapid and low-cost technique to fabricate novel architectures of manganese oxides having the desired crystal phase, which will highly benefit various supercapacitor applications.
机译:我们提出了一种简单快速的程序,用于在碱性溶剂热条件下在2-丁醇/水溶液中作为模板的阳离子表面活性剂的存在下一锅法合成锰氧化物。我们的方法首次制备了由小纳米粒子组成的三维尖晶石型MnO_2微球。在超级电容器电极的应用中,它们相应的电化学性能在0.5 A / g时具有约190 F / g的良好比电容(SC)值,在1000次充放电后具有出色的SC保留率和库仑效率,分别为〜100%和〜95%分别以1 A / g循环。这表明其在储能设备中的潜在应用。此外,我们证明了这种溶剂热技术能够使片晶,棒,纤维和纳米颗粒等多种形式的锰氧化物进行形态调整。这项工作描述了一种快速且低成本的技术来制造具有所需晶相的锰氧化物的新型结构,这将极大地有益于各种超级电容器应用。

著录项

  • 来源
    《Journal of Materials Research》 |2014年第1期|107-114|共8页
  • 作者单位

    Department of Chemistry, National Chung-Using University, 40227 Taichung, Taiwan;

    Department of Chemistry, National Chung-Using University, 40227 Taichung, Taiwan;

    Department of Chemistry, National Chung-Using University, 40227 Taichung, Taiwan;

    Department of Chemistry, National Chung-Using University, 40227 Taichung, Taiwan;

  • 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
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