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Water in Extremely Narrow Planar Pores with Crystalline Walls. 2. Thermodynamics

机译:带有结晶壁的极窄平面孔中的水。 2.热力学

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The free energy, entropy, and work of water vapor adsorption in planar pores with widths of 0.62 and 1.25 nm located in a silver iodide crystal parallel to its basal face have been computed at the molecular level. In contrast to adsorption on a free surface, the adsorption in the pores proceeds in three stages, i.e., the formation of molecular films on the walls, coalescence of the films, and densification of the fluid in the pore volume. At the second stage, the equilibrium between the fluid in the pore and the vapor over the pore at temperatures corresponding to normal conditions is thermodynamically unstable and accompanied by the development of a free energy barrier and the existence of metastable states. As temperature is elevated, the instability is gradually evened out; however, its signs remain preserved even at the boiling temperature of water. Extremely narrow pores with widths smaller than 1 nm are always filled with water under conditions of even a rather dry natural atmosphere. The filling of pores several nanometers wide in strongly unsaturated water vapors overcomes the free-energy barrier; however, the fluid that has filled the pore remains stable with respect to evaporation in vapors with densities lower than the density of saturated vapor by several orders of magnitude. The existence of the free-energy barrier and metastable states in nanosized breaks in crystals creates conditions for hysteresis of adsorption-desorption cycles.
机译:在分子水平上计算了碘化银晶体平行于基面的宽度为0.62和1.25 nm的平面孔中的自由能,熵和水蒸气在纳米孔中的吸附功。与在自由表面上的吸附相反,在孔中的吸附分三个阶段进行,即在壁上形成分子膜,膜的聚结和在孔体积中流体的致密化。在第二阶段,在与正常条件相对应的温度下,孔隙中的流体与孔隙中的蒸汽之间的平衡在热力学上是不稳定的,并伴随着自由能垒的发展和亚稳态的存在。随着温度的升高,不稳定性逐渐消除。但是,即使在水的沸腾温度下,它的迹象仍然得以保留。即使在相当干燥的自然气氛下,宽度小于1 nm的极窄的孔总是充满水。在高度不饱和的水蒸气中填充几纳米宽的孔可以克服自由能的障碍。然而,填充在孔中的流体相对于蒸汽的蒸发保持稳定,其密度比饱和蒸汽的密度低几个数量级。晶体中纳米级断裂中自由能垒和亚稳态的存在为吸附-解吸循环的滞后创造了条件。

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