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首页> 外文期刊>Journal of power sources >Feasibility of quaternary alkyl ammonium-intercalated graphite as negative electrode materials in electrochemical capacitors
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Feasibility of quaternary alkyl ammonium-intercalated graphite as negative electrode materials in electrochemical capacitors

机译:季烷基铵插层石墨作为电化学电容器负极材料的可行性

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The electrochemical capacitor of graphite/activated carbon (AC) using quaternary alkyl ammonium-based organic electrolytes has been proposed. The charge storage mechanisms involve the adsorption of anions into pores of the AC positive electrode and the intercalation of ammonium cations into crystal lattice of the graphite negative electrode, respectively. The intercalation processes of ammonium cations have been investigated by in situ XRD measurements on graphite negative electrodes and the effect of cation size has been intensively addressed. Among the four quaternary alkyl ammonium cations, the intercalation of the biggest cation tetrabutyl ammonium demonstrates the largest degree of crystal lattice expansion of graphite, but the best cycle-ability. By contrast, the insertion of second big cation tetraethyl ammonium into graphite gives the smallest expansion degree of graphite crystal lattice, but poor cycle performance of capacitor. A mechanism has been proposed to explain the above phenomenon.
机译:已经提出了使用季烷基铵基有机电解质的石墨/活性炭(AC)的电化学电容器。电荷存储机制包括分别将阴离子吸附到交流正极的孔中和将铵阳离子嵌入石墨负极的晶格中。通过在石墨负极上进行原位XRD测量研究了铵阳离子的嵌入过程,并已深入研究了阳离子尺寸的影响。在四个季烷基铵阳离子中,最大阳离子四丁基铵的嵌入表明,石墨的晶格膨胀程度最大,但循环性能最佳。相比之下,将第二大阳离子四乙基铵插入石墨中可使石墨晶格的膨胀度最小,但电容器的循环性能较差。已经提出了一种机制来解释上述现象。

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