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Freezing and melting transitions of liquids in mesopores with ink-bottle geometry

机译:具有墨瓶几何形状的中孔中液体的冻结和熔融转变

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摘要

Freezing and melting behavior of nitrobenzene in mesoporous silicon with different pore size and with different porous structure have been studied using H-1 NMR cryoporometry. With the bulk phase surrounding the porous monoliths, in materials with uniform channel-like pores distinct pore-size-dependent freezing and melting transitions have been measured. These data were further used for the analysis of the fluid behavior in samples with modulated porous structure, namely linear pores with alternating cross-section. We have, in particular, considered two materials consisting of channel sections, which were separated by almost identical channel `necks' but notably differed in the respective channel diameters. In the smaller channel segments, the observed shift in the freezing temperature provides direct evidence of the relevance of a pore-blocking mechanism, i.e. of the retardation in the propagation of a solid front by the channel necks. In the channel segments with larger diameter, on the other hand, freezing is found to be initiated by homogeneous nucleation.
机译:使用H-1 NMR低温测量法研究了硝基苯在具有不同孔径和不同多孔结构的介孔硅中的冻结和熔融行为。在本体相围绕多孔整料的情况下,在具有均匀通道状孔的材料中,已测量到不同的取决于孔径的冻结和熔融转变。这些数据还用于分析具有调制多孔结构(即具有交替横截面的线性孔)的样品中的流体行为。我们特别考虑了两种由通道段组成的材料,它们被几乎相同的通道“颈部”隔开,但各自的通道直径明显不同。在较小的通道段中,观察到的冻结温度变化提供了孔阻塞机制的相关性的直接证据,即通道颈对固体前沿传播的阻碍。另一方面,在具有较大直径的通道段中,发现冻结是由均匀成核引起的。

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