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Nanostructured manganese dioxides as active materials for micro-supercapacitors

机译:纳米结构二氧化锰作为微型超级电容器的活性材料

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摘要

This Letter presents the design, synthesis and characterisation of nanostructured manganese dioxides (MnO2) and their composites as electrode materials for high-capacity micro-supercapacitors. Three MnO2 samples have been synthesised by liquid-phase reaction processes, and characterised by X-ray diffraction, Fourier-transform infrared spectroscopy, scanning electron microscopy, surface area measurement and electrochemical tests. As a result, a preferred composite containing nano-MnO2 powder as active material, acetylene black as conductive agent and polyvinylidene fluoride as binder, exhibits a specific capacitance as high as 160 F/g in 0.2 M K2SO4 aqueous solution. Then a microsupercapacitor device with 3D interdigital structure using the composite material as electrodes has been achieved by MEMS fabrication technology. The micro-supercapacitor has well-performed capacitive behaviour under various scan rates and has a large specific capacitance of 30 mF/cm2 in terms of footprint area or 50 F/cm3 in terms of effective volume, which indicates that the composite is a promising material for energy storage on chips.
机译:这封信介绍了纳米结构二氧化锰(MnO 2 )及其复合材料作为大容量微型超级电容器电极材料的设计,合成和表征。通过液相反应工艺合成了3个MnO2样品,并通过X射线衍射,傅里叶变换红外光谱,扫描电子显微镜,表面积测量和电化学测试进行了表征。结果,优选的包含纳米MnO 2 粉末作为活性材料,乙炔黑作为导电剂和聚偏二氟乙烯作为粘合剂的复合材料在0.2 M K2SO中具有高达160 F / g的比电容。 4水溶液。然后,通过MEMS制造技术实现了以复合材料为电极的具有3D叉指结构的微型超级电容器。微型超级电容器在各种扫描速率下均具有良好的电容性能,并且具有占地面积大的30 mF / cm 2 或50 F / cm 3 在有效体积方面,这表明该复合材料是用于芯片上能量存储的有前途的材料。

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  • 来源
    《Micro & Nano Letters, IET》 |2012年第8期|p.744-748|共5页
  • 作者单位

    Tsinghua National Laboratory for Information Science and Technology, Tsinghua University, Institute of Microelectronics, Tsinghua University;

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