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Dielectric investigations of the dynamic glass transition in nanopores

机译:纳米孔中动态玻璃化转变的介电研究

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摘要

Broadband dielectric spectroscopy (10(-2) Hz-10(9) Hz) is employed to study the dynamic glass transition of low-molecular-weight glass-forming liquids being confined to nanoporous sol-gel glasses with pore sizes of 2.5, 5.0, and 7.5 nm. As glass-forming liquids, salol (one hydroxy group), pentylene glycol (two hydroxy groups), and glycerol (three hydroxy groups) were chosen. We interpret the dielectric spectra in terms of a two-state model with dynamic exchange between a bulklike phase in the pore volume and an interfacial phase close to the pore wall. This enables one to analyze in detail the interplay between the molecular dynamics in the two subsystems (bulklike and interfacial), its dynamic exchange, and hence their growth and decline in dependence on temperature and strength of the molecular interactions. For glycerol it is shown that a bulklike dynamic glass transition takes place in subvolumes as small as about 1 nm.
机译:宽带介电谱(10(-2)Hz-10(9)Hz)用于研究低分子量玻璃形成液体的动态玻璃化转变,其局限于孔径为2.5、5.0的纳米多孔溶胶凝胶玻璃中和7.5 nm。作为玻璃形成液,选择了沙罗尔(1个羟基),戊二醇(2个羟基)和甘油(3个羟基)。我们用两态模型解释介电谱,该模型具有孔体积中的块状相和靠近孔壁的界面相之间的动态交换。这使人们能够详细分析两个子系统(体状和界面)中分子动力学之间的相互作用,其动态交换,以及因此取决于温度和分子相互作用强度的增长和下降。对于甘油,表明在小至约1nm的子体积中发生块状动态玻璃化转变。

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