困在乙二醇-六甲基磷酸三酰胺玻璃中的电子光谱

E. Hankiewicz, Cz. Stradowski, M. Wolszczak, J. Kroh
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引用次数: 3

摘要

研究了乙二醇(EG)-六甲基磷酸三酰胺(HMPA)在77 K及更高温度下的电子光谱与基体组成的关系。用一个简单的电子俘获二元模型解释了最大能带位置、电子带半宽度和捕获电子产率等光谱特征的变化。浅俘获电子位于HMPA分子之间,深俘获电子位于EG团簇内部。EG的聚类过程在~ 50 mol% EG时逐步开始。由于位于不同深度陷阱中的电子的热稳定性不同,在较高温度下光谱变化的解释更为复杂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectra of electrons trapped in ethylene glycol-hexamethylphosphoric triamide glasses

Spectra of electrons in ethylene glycol (EG)-hexamethylphosphoric triamide (HMPA) were studied at 77 K and higher temperatures as a function of matrix composition. The changes of such spectral characteristics as position of maximum, half-width of electron band and the yield of trapped electrons were interpreted in terms of a simple two-site model of electron trapping. Shallow trapped electrons are located among HMPA molecules while deeply trapped electrons are located inside EG clusters. The process of EG clustering starts stepwise at ∼50 mol% EG. The interpretation of spectral changes at higher temperatures is more complex because of the different thermal stability of electrons located in traps of various depths.

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