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首页> 外文期刊>The Journal of Chemical Physics >Melting of superheated molecular crystals
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Melting of superheated molecular crystals

机译:过热分子晶体的熔化

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Melting dynamics of micrometer scale, polycrystalline samples of isobutane, dimethyl ether, methyl benzene, and 2-propanol were investigated by fast scanning calorimetry. When films are superheated with rates in excess of 10(5) K s(-1), the melting process follows zero-order, Arrhenius-like kinetics until approximately half of the sample has transformed. Such kinetics strongly imply that melting progresses into the bulk via a rapidly moving solid-liquid interface that is likely to originate at the sample's surface. Remarkably, the apparent activation energies for the phase transformation are large; all exceed the enthalpy of vaporization of each compound and some exceed it by an order of magnitude. In fact, we find that the crystalline melting kinetics are comparable to the kinetics of dielectric alpha-relaxation in deeply supercooled liquids. Based on these observations, we conclude that the rate of non-isothermal melting for superheated, low-molecular-weight crystals is limited by constituent diffusion into an abnormally dense, glass-like, non-crystalline phase. Published by AIP Publishing.
机译:通过快速扫描量热法研究了微米刻度,异丁烷,二甲醚,甲基苯和2-丙醇的多晶样品的熔化动力学。当薄膜过热超过10(5)克(-1)时,熔化过程遵循零阶,呈零级,诸如样品的大约一半的样品。这种动力学强烈暗示,熔化通过可能源于样品表面的快速移动的固液界面进入体积。值得注意的是,相变的表观激活能量很大;均超过每个化合物的蒸发焓,并且一些超过它的级别超过幅度。事实上,我们发现结晶熔融动力学与深冷液体中的介电α-松弛的动力学相当。基于这些观察结果,我们得出结论,过热的非等温熔化的速率,通过组成扩散为异常致密,玻璃状,非结晶相的限制。通过AIP发布发布。

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