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When Thermodynamic Properties of Adsorbed Films Depend on Size: Fundamental Theory and Case Study

机译:当吸附薄膜的热力学性质取决于尺寸:基本理论和案例研究

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摘要

Small system properties are known to depend on geometric variables in ways that are insignificant for macroscopic systems. Small system considerations are therefore usually added to the conventional description as needed. This paper presents a thermodynamic analysis of adsorbed films of any size in a systematic and general way within the framework of Hill’s nanothermodynamics. Hill showed how to deal with size and shape as variables in a systematic manner. By doing this, the common thermodynamic equations for adsorption are changed. We derived the governing thermodynamic relations characteristic of adsorption in small systems, and point out the important distinctions between these and the corresponding conventional relations for macroscopic systems. We present operational versions of the relations specialized for adsorption of gas on colloid particles, and we applied them to analyze molecular simulation data. As an illustration of their use, we report results for CO2 adsorbed on graphite spheres. We focus on the spreading pressure, and the entropy and enthalpy of adsorption, and show how the intensive properties are affected by the size of the surface, a feature specific to small systems. The subdivision potential of the film is presented for the first time, as a measure of the film’s smallness. For the system chosen, it contributes with a substantial part to the film enthalpy. This work can be considered an extension and application of the nanothermodynamic theory developed by Hill. It provides a foundation for future thermodynamic analyses of size- and shape-dependent adsorbed film systems, alternative to that presented by Gibbs.
机译:已知小系统属性依赖于对宏观系统微不足道的方式的几何变量。因此,根据需要,通常将小系统考虑添加到传统描述中。本文以山纳温动力学框架内的系统和一般方式提供了任何规模的吸附薄膜的热力学分析。希尔显示了如何以系统的方式处理尺寸和形状作为变量。通过这样做,改变吸附的常见热力学方程。我们源于小型系统中吸附的控制热力学关系,并指出了这些和相应的宏观系统的传统关系之间的重要区别。我们呈现出专门用于吸附胶体颗粒的关系的运营版本,我们将它们应用于分析分子模拟数据。作为他们使用的说明,我们向石墨球上吸附的CO2的结果报告结果。我们专注于扩散压力,以及吸附的熵和焓,并展示了密集型的性质如何受到表面大小的影响,该特征是小系统的特征。薄膜的细分电位是第一次呈现,作为薄膜的小的量度。对于所选择的系统,它有助于电影焓。这项工作可以被认为是山上开发的纳米热动力学理论的扩展和应用。它为未来的依赖性吸附薄膜系统提供了未来热力学分析的基础,由Gibbs提供的替代方案。

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