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首页> 外文期刊>The Journal of Chemical Physics >Translational diffusion of cumene and 3-methylpentane on free surfaces and pore walls studied by time-of-flight secondary ion mass spectrometry
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Translational diffusion of cumene and 3-methylpentane on free surfaces and pore walls studied by time-of-flight secondary ion mass spectrometry

机译:用飞行时间二次离子质谱法研究枯烯和3-甲基戊烷在自由表面和孔壁上的平移扩散

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摘要

Mobility of molecules in confined geometry has been studied extensively, but the origins of finite size effects on reduction of the glass transition temperature, Tg, are controversial especially for supported thin films. We investigate uptake of probe molecules in vapor-deposited thin films of cumene, 3-methylpentane, and heavy water using secondary ion mass spectrometry and discuss roles of individual molecular motion during structural relaxation and glass-liquid transition. The surface mobility is found to be enhanced for low-density glasses in the sub-Tg region because of the diffusion of molecules on pore walls, resulting in densification of a film via pore collapse. Even for high-density glasses without pores, self-diffusion commences prior to the film morphology change at Tg, which is thought to be related to decoupling between translational diffusivity and viscosity. The diffusivity of deeply supercooled liquid tends to be enhanced when it is confined in pores of amorphous solid water. The diffusivity of molecules is further enhanced at temperatures higher than 1.2-1.3 Tg irrespective of the confinement.
机译:在有限的几何形状中分子的迁移性已经得到了广泛的研究,但是有限尺寸效应对降低玻璃化转变温度Tg的起因是有争议的,尤其是对于支撑薄膜而言。我们使用二次离子质谱技术研究异丙基苯,3-甲基戊烷和重水的气相沉积薄膜中探针分子的吸收,并讨论结构运动和玻璃-液体转变过程中单个分子运动的作用。对于亚Tg区域的低密度玻璃来说,由于分子在孔壁上的扩散,导致其表面迁移率提高,从而导致膜通过孔塌陷致密化。即使对于没有孔的高密度玻璃,自扩散也要在Tg的薄膜形态改变之前开始,这被认为与平移扩散率和粘度之间的解耦有关。当深度过冷的液体被限制在无定形固体水的孔隙中时,其扩散性趋于增强。无论限制如何,在高于1.2-1.3 Tg的温度下,分子的扩散性都会进一步提高。

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