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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Transition metal oxide-based electrode materials for flexible supercapacitors: A review
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Transition metal oxide-based electrode materials for flexible supercapacitors: A review

机译:用于柔性超级电容器的过渡金属氧化物基电极材料:综述

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All over the world, the research done on designing the novel methods for inventing flexible electrochemical energy storage devices is becoming of more interest each day while the development of new technology in fields such as public wearable, consuming portable electronics, and electronic skin proceeds. Taking their large power density, cyclic stability, and outstanding mechanical integrity completeness into account, flexible supercapacitors are being used as energy storage devices at a wide interval. In the past few years, researchers have devoted considerable energy to promoting different kinds of transition metal oxides (TMOs) to employ in supercapacitors. Their choice can be found in unique TMOs characteristics such as ideal capacitive performance, low cost, and environment friendly. Their charge storage mechanisms obey from pseudocapacitance behavior. In the present document, we aim to provide a brief collection of the latest outcomes about several electrode materials of flexible supercapacitors based on TMOs and present this review by categories. The most popular routes to produce TMOs-based electrode materials, and the typical fabrication techniques for flexible devices, are thoroughly discussed. To add, since there is a tight connection between the morphology of the electrode materials and the electrochemical performance, the evaluation of the electrode component effect on the mechanical flexibility of the fabricated devices is a necessity. Not far ago for making accurate predictions about the upcoming trends towards the comprehension of an ultimate-performance, TMOs-based flexible supercapacitors, a history of the throughout electrochemical nobles and current evolution of the reported devices has been reported. (C) 2020 Elsevier B.V. All rights reserved.
机译:在全世界范围内,随着公共可穿戴、消费便携式电子产品和电子皮肤等领域新技术的发展,设计用于发明柔性电化学储能装置的新方法的研究日益受到关注。考虑到其大功率密度、循环稳定性和出色的机械完整性,柔性超级电容器被广泛用作储能装置。在过去的几年里,研究人员投入了大量精力来推广各种过渡金属氧化物(TMO)用于超级电容器。他们的选择可以在独特的TMO特性中找到,例如理想的电容性能、低成本和环境友好。它们的电荷储存机制服从赝电容行为。在本文件中,我们将简要介绍几种基于TMO的柔性超级电容器电极材料的最新研究成果,并按类别进行综述。详细讨论了基于TMOs的电极材料的最流行生产路线,以及柔性器件的典型制造技术。此外,由于电极材料的形态与电化学性能之间存在紧密联系,因此有必要评估电极组件对所制造器件机械柔性的影响。不久前,为了准确预测最终性能的未来趋势,已经报道了基于TMOs的柔性超级电容器、整个电化学贵族的历史以及所报道设备的当前演变。(C) 2020爱思唯尔B.V.版权所有。

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