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Temperature-Dependent Implicit-Solvent Model of Polyethylene Glycol in Aqueous Solution

机译:水溶液中聚乙二醇的温度依赖性隐式溶剂模型

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摘要

A temperature (T)-dependent coarse-grained (CG) Hamiltonian of polyethylene glycol/oxide (PEG/PEO) in aqueous solution is reported to be used in implicit solvent material models in a wide temperature (i.e., solvent quality) range. The T-dependent nonbonded CG interactions are derived from a combined "bottom-up" and "top-down" approach. The pair potentials calculated from atomistic replica-exchange molecular dynamics simulations in combination with the iterative Boltzmann inversion are postrefined by benchmarking to experimental data of the radius of gyration. For better handling and a fully continuous transferability in T-space, the pair potentials are conveniently truncated and mapped to an analytic formula with three structural parameters expressed as explicit continuous functions of T. It is then demonstrated that this model, without further adjustments successfully reproduces other experimentally known key thermodynamic properties of semidilute PEG solutions such as the full equation of state (i.e., T-dependent osmotic pressure) for various chain lengths as well as their cloud, point (or collapse) temperature.
机译:据报道,在水溶液中的聚乙二醇/氧化物(PEG / PEO)的温度(T) - 依赖性粗粒(CG)Hamiltonian(PEG / PEO)在宽温度(即溶剂质量)范围内以隐性溶剂材料模型中使用。 T依赖性非粘合的CG交互源自组合的“自下而上”和“自上而下”方法。通过基准与迭代Boltzmann反转组合的原子复制 - 交换分子动力学模拟计算的对电位是通过基准测试到循环半径的实验数据的Postrefined。为了更好地处理和在T空间中完全连续的可连续性,对电位方便地截断并映射到分析配方,其中三个结构参数表示为T的明确连续功能。然后,该模型未经进一步调整成功再现用于各种链长度以及各种链长度以及它们的云,点(或塌陷)温度的其他实验已知的半径PEG溶液的关键型热力学性能

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