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Electrochemical characteristics of nanoporous carbide-derived carbon materials in non-aqueous electrolyte solutions

机译:非水电解液中纳米多孔碳化物衍生碳材料的电化学特性

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Electrochemical characteristics for the 1 M (C2H_5)_3CH_3NBF_4 + acetonitrile (AN)|carbide-derived carbon nanoporous (prepared from TiC, α-SiC, Mo_2C, Al_4C_3 and B_4C) interface have been established by cyclic voltammetry and electrochemical impedance spectroscopy. The gas adsorption measurements have been used for the obtaining the specific surface area, pore size distribution, nanopore volume and other characteristics, dependent on the precursor carbide used (nanopores are pores in the range of 2 nm and below – i.e. micropores according to IUPAC classification). The region of ideal polarizability, values of series and parallel capacitances, parallel resistance and capacitance and other characteristics dependent on the precursor carbide have been established.
机译:已经通过循环伏安法和电化学阻抗谱法确定了1 M(C2H_5)_3CH_3NBF_4 +乙腈(AN)衍生的碳纳米孔(由TiC,α-SiC,Mo_2C,Al_4C_3和B_4C制备)的电化学特性。气体吸附测量已用于获得比表面积,孔径分布,纳米孔体积和其他特性,具体取决于所使用的前驱碳化物(纳米孔是2 nm及以下范围内的孔–即根据IUPAC分类的微孔)。已经建立了理想极化率区域,串联和并联电容值,并联电阻和电容值以及其他取决于前驱碳化物的特性。

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