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Capacitive energy storage in micro-scale devices: recent advances in design and fabrication of micro-supercapacitors

机译:微型设备中的电容储能:微型超级电容器的设计和制造的最新进展

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摘要

Miniaturized energy storage is essential for the continuous development and further miniaturization of electronic devices. Electrochemical capacitors (ECs), also called supercapacitors, are energy storage devices with a high power density, fast charge and discharge rates, and long service life. Small-scale supercapacitors, or micro-supercapacitors, can be integrated with microelectronic devices to work as stand-alone power sources or as efficient energy storage units complementing batteries and energy harvesters, leading to wider use of these devices in many industries. In recent years, the research in this field has rapidly advanced and micro-supercapacitors with improved storage capacity and power density have been developed. The important factors affecting the performance of micro-supercapacitors are the intrinsic properties of electrode materials and electrolyte, architectural design of the device and the fabrication methods. This paper reviews the recent advances in fabrication of materials and devices and provides a critical analysis of reported performances of micro-supercapacitors.
机译:微型化的能量存储对于电子设备的持续发展和进一步微型化至关重要。电化学电容器(EC)也称为超级电容器,是一种能量存储设备,具有高功率密度,快速充电和放电速率以及长使用寿命。小型超级电容器或微型超级电容器可以与微电子设备集成在一起,以用作独立电源或作为补充电池和能量收集器的高效能量存储单元,从而在许多行业中广泛使用这些设备。近年来,该领域的研究迅速发展,并且已经开发了具有改善的存储容量和功率密度的微型超级电容器。影响微型超级电容器性能的重要因素是电极材料和电解质的内在特性,器件的结构设计和制造方法。本文回顾了材料和器件制造方面的最新进展,并对报告的微型超级电容器的性能进行了严格的分析。

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  • 来源
    《Energy & environmental science》 |2014年第3期|867-884|共18页
  • 作者

    Majid Beidaghi; Yury Gogotsi;

  • 作者单位

    A J. Drexel Nanotechnology Institute, Department of Materials Science and Engineering, Drexel University, Philadelphia, PA 19104, USA;

    A J. Drexel Nanotechnology Institute, Department of Materials Science and Engineering, Drexel University, Philadelphia, PA 19104, USA;

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