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Hill's small systems nanothermodynamics: A simple macromolecular partition problem with a statistical perspective

机译:希尔的小系统纳米热力学:一个简单的具有统计角度的大分子分配问题

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摘要

Using a simple example of biological macromolecules which are partitioned between bulk solution and membrane, we investigate T.L. Hill's phenomenological nanothermodynamics for small systems. By introducing a system size-dependent equilibrium constant for the bulk-membrane partition, we obtain Hill's results on differential and integral chemical potentials μ and μ? from computations based on standard Gibbsian equilibrium statistical mechanics. It is shown that their difference can be understood from an equilibrium re-partitioning between bulk and membrane fractions upon a change in the system's size; it is closely related to the system's fluctuations and inhomogeneity. These results provide a better understanding of nanothermodynamics and clarify its logical relation with the theory of statistical mechanics.
机译:我们使用一个简单的生物大分子实例将其分配在本体溶液和膜之间,研究T.L.。希尔针对小型系统的现象学纳米热力学。通过为体膜分配引入与系统大小有关的平衡常数,我们获得了关于微分和积分化学势μ和μ?的Hill结果。从基于标准吉布斯均衡统计力学的计算得出。结果表明,根据系统尺寸的变化,可以从本体部分和膜部分之间的平衡重新分配中了解它们的区别。它与系统的波动和不均匀性密切相关。这些结果提供了对纳米热力学的更好理解,并阐明了其与统计力学理论的逻辑关系。

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