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A novel hybrid supercapacitor based on spherical activated carbon and spherical MnO2 in a non-aqueous electrolyte

机译:非水电解质中基于球形活性炭和球形MnO2的新型混合超级电容器

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摘要

A novel non-aqueous hybrid supercapacitor was fabricated from two spherical materials - an activated mesocarbon microbead (AMCMB) and MnO2 nanowire-sphere, as the negative and positive electrodes, respectively. The preliminary results for this energy-storage device, which operates over a wide voltage range (0.0-3.0 V) using 1 M Et4NBF4 in acetonitrile (AN) as electrolytes, are presented. On the basis of a single electrode, the AMCMB|MnO2 supercapacitor displays a high specific capacitance of 228 F g~(-1) at a scan rate of 10 mV s~(-1), corresponding to specific energy of 128 W h kg~(-1) based on based on the total mass of active materials, while maintaining desirable cycling stability and rate capability. The combination of the spherical AMCMB and MnO2 in a non-aqueous electrolyte is proved to be suitable for high-performance hybrid supercapacitor applications.
机译:一种新颖的非水混合超级电容器由两种球形材料制成,分别是负极活性炭和正极,分别是活性中间碳微珠(AMCMB)和MnO2纳米线球。给出了此储能装置的初步结果,该装置使用1 M Et4NBF4在乙腈(AN)中作为电解质,可在很宽的电压范围(0.0-3.0 V)下工作。在单个电极的基础上,AMCMB | MnO2超级电容器以10 mV s〜(-1)的扫描速率显示228 F g〜(-1)的高比电容,对应于128 W h kg的比能以活性物质的总质量为基础的〜(-1),同时保持理想的循环稳定性和速率能力。球状AMCMB和MnO2在非水电解质中的组合被证明适用于高性能混合超级电容器应用。

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