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THERMAL CONDUCTIVITY OF METASTABLE STATES OF SIMPLE ALCOHOLS

机译:简单醇的亚稳态的导热系数

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摘要

The thermal conductivity K(T) of glassy and supercooled liquid methanol, ethanol and of 1-propanol has been measured under equilibrium vapor pressure in temperature interval from 2 K to 160 K by the steady-state method. The metastable orientationally disordered crystal of ethyl alcohol is found to exhibit a temperature dependence of K(T) that is remarkably close to that of the fully amorphous solid, especially at low temperatures. In the case of propyl alcohol, our results emphasize the role played by internal molecular degrees of freedom as sources of strong resonant phonon scattering. For all samples here explored, the glass-like behavior of K(T) is described at the phenomenological level using the model of soft potentials. The thermal transport is then understood in terms of a competition between phonon-assisted and diffusive transport effects. The thermal conductivity lc is thus a sum of two contributions: κ =κ_I + κ_(II), where κ_I is the acoustic phonon component dependent on the translational and orientational ordering of molecules, κ_(II) – is the phonon diffusion component corresponding to a non – acoustic phonon heat transfer in accordance with the Cahill – Pohl model.
机译:通过稳态法在2k至160k的温度间隔的平衡蒸气压下测量玻璃和过冷液甲醇,乙醇和1-丙醇的导热率K(t)。发现乙醇的亚乙醇的亚稳定性无序晶体表现出K(t)的温度依赖性,其显着接近完全无定形固体的k(t),尤其是在低温下。在丙醇的情况下,我们的结果强调了内部分子自由度所发挥的作用作为强谐振声子散射的来源。对于这里探索的所有样品,使用软势模型在现象学水平描述K(T)的玻璃状行为。然后在辅助和扩散运输效果之间的竞争方面理解热传输。导热性LC是两种贡献的总和:κ=κ_i+κ_(ii),其中κ_i是依赖于分子的平移和方向排序的声学声子组分,κ_(ii) - 是对应的声子扩散分量根据CAHILL - POHL模型的非声学声子传热。

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