The formation mechanism of electret properties in dispersed media based on LiF crystals

N. T. Maksimova, S. Y. Terenin, A. Mitova, L. I. Ruzhnikov
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Abstract

Studies of the process of electret charge generation in LiF crystals subjected to mechanical activation and evaluation of the role of color centers in this process were carried out. Accumulation of currents in the studied material in absence of external voltage is connected with electrical activity of the system and the generation of a stable internal electric field in this system. The electric field generated in a heterogeneous medium formed by fine-dispersed lithium fluoride and a water film, causes ionization of polar water molecules that produce conductivity channels. This leads to active electrical interaction of the surfaces of solid and liquid dielectrics included in structure of the system under study. The presence of radiation induced defects in the dispersed phase based on LiF influences the processes of interphase interactions. This contributes to formation of deep electron traps and increases the lifetime of the charge of electrets.
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基于LiF晶体的分散介质中驻极体性质的形成机制
研究了在机械活化的liff晶体中驻极体电荷产生的过程,并评价了色中心在这一过程中的作用。在没有外部电压的情况下,所研究材料中的电流积累与系统的电活动和系统中稳定的内部电场的产生有关。在由精细分散的氟化锂和水膜组成的非均匀介质中产生的电场导致极性水分子电离,从而产生导电通道。这导致在研究系统的结构中包含的固体和液体介电体表面的主动电相互作用。基于LiF的分散相中辐射缺陷的存在影响了相间相互作用的过程。这有助于形成深电子陷阱,并增加驻极体电荷的寿命。
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