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Freezing and melting of water in a single cylindrical pore: The pore-size dependence of freezing and melting behavior

机译:单个圆柱孔中水的冻结和融化:冻结和融化行为的孔径依赖性

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摘要

In order to clarify the origin of the hysteresis between freezing and melting of pore water, we performed x-ray diffraction measurements of water confined inside the cylindrical pores of seven kinds of siliceous MCM-41 (a member of ordered mesoporous materials denoted by Mobil Oil researchers) with different pore radii (1.2-2.9 nm) and the interconnected pores of Vycor glass as a function of temperature. The hysteresis effect depends markedly on the size of the cylindrical pores: the hysteresis is negligibly small in smaller pores and becomes remarkable in larger pores. This strongly suggests that the hysteresis is arisen from size-dependent supercooling of water confined to the mesopores. For the water confined to the mesopores with pore radius of 1.2 nm, a continuous transition between a liquid and a solid precedes the first-order freezing transition of the pore water which would occur by the same mechanism as in bulk water.
机译:为了弄清孔隙水的冻结和融化之间的磁滞现象的起源,我们对局限在7种硅质MCM-41(以Mobil Oil表示的有序介孔材料的成员)的圆柱孔内的水进行了X射线衍射测量研究人员)具有不同的孔半径(1.2-2.9 nm)和Vycor玻璃的互连孔随温度的变化。磁滞效应明显取决于圆柱孔的大小:在较小的孔中,磁滞很小,可以忽略不计;在较大的孔中,磁滞明显。这强烈表明,滞后现象是由受限于中孔的水的尺寸依赖性过冷引起的。对于局限在孔径为1.2 nm的中孔中的水,液体和固体之间的连续转变先于孔隙水的一阶冻结转变,这与散装水中的发生机理相同。

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