Quantum accumulation of electrical energy at interfacial boundaries in heterophase inorganic / organic clathrates

V. Maksymych, R. Shvets, F. Ivashchyshyn
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Abstract

The work is devoted to the current problem of finding new ways and mechanisms of high-density electric energy accumulation. As a result of the conducted researches the system which allows to accumulate an electric charge at the expense of quantum effects and the phenomena without use of chemical reactions is offered. The basic idea was to form a material with a colossal area of the inner active surface with a sharply anisotropic chemical bonding character. Accordingly, the main goal was to create and study electrode materials based on intercalant heterophase structures with different types of hierarchy, capable of storing electrical energy at the quantum level. Based on the results of impedance spectroscopy, it was found that the obtained clathrate structures are promising for use as a cavitand electrode in a quantum battery, and, most importantly, can significantly increase its capacity
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异相无机/有机包合物界面边界处电能的量子积累
本工作致力于寻找高密度电能积累的新途径和新机制。根据所进行的研究,提供了一种不使用化学反应而以牺牲量子效应和现象为代价来积累电荷的系统。其基本思想是形成一种具有巨大内活性表面面积的材料,具有明显的各向异性化学键特性。因此,主要目标是创建和研究基于具有不同类型层次的插层异相结构的电极材料,能够在量子水平上存储电能。阻抗谱分析结果表明,所制备的包合物结构不仅可以作为量子电池的空腔和电极,而且可以显著提高量子电池的容量
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