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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Parametrization of 2,2,2-Trifluoroethanol Based on the Generalized Amber Force Field Provides Realistic Agreement between Experimental and Calculated Properties of Pure Liquid as Well as Water-Mixed Solutions
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Parametrization of 2,2,2-Trifluoroethanol Based on the Generalized Amber Force Field Provides Realistic Agreement between Experimental and Calculated Properties of Pure Liquid as Well as Water-Mixed Solutions

机译:基于广义琥珀色力场的2,2,2-三氟乙醇参数化提供了纯液体以及水混合溶液的实验性质和计算性质之间的现实一致

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摘要

We present a novel force field model of 2,2,2-trifluoroethanol (TFE) based oh the generalized AMBER force field. The model was exhaustively parametrized to reproduce liquid-state properties of pure TFE, namely, density, enthalpy of vaporization, self-diffiision coefficient, and population of trans and gauche conformers. The model predicts excellently other liquid-state properties such as shear viscosity, thermal expansion coefficient, and isotropic compressibility. The resulting model describes unexpectedly well the state equation of the liquid region in the range of 100 K and 10 MPa. More importantly, the proposed TFE model was optimized for use in combination with the TIP4P/Ew and TIP4P/2005 water models. It does not manifest excessive aggregation, which is known for other models, and therefore, it is supposed to more realistically describe the behavior of TFE/water mixtures. This was demonstrated by means of the Kirkwood—Buff theory of solutions and reasonable agreement with experimental data. We explored a considerable part of the parameter space and systematically tested individual combinations of parameters for performance in combination with the TIP4P/Ew and TIP4P/2005 water models. We observed ambiguity in parameters describing pure liquid TFE; however, most of them failed for TFE/water mixtures. We clearly demonstrated the necessity for balanced TFE—TFE, TFE—water, and water—water interactions which can be acquired only by employing implicit polarization correction in the course of parametrization.
机译:我们提出了一种基于广义AMBER力场的2,2,2-三氟乙醇(TFE)的新型力场模型。对模型进行了详尽的参数化,以再现纯TFE的液态特性,即密度,汽化焓,自扩散系数以及反式和gauche构象异构体的数量。该模型可以很好地预测其他液态特性,例如剪切粘度,热膨胀系数和各向同性可压缩性。结果模型意外地很好地描述了在100 K和10 MPa范围内的液体区域状态方程。更重要的是,对建议的TFE模型进行了优化,以与TIP4P / Ew和TIP4P / 2005水模型结合使用。它没有表现出其他模型已知的过度聚集,因此,它应该更现实地描述TFE /水混合物的行为。这是通过柯克伍德-巴夫(Kirkwood-Buff)解理论以及与实验数据的合理吻合来证明的。我们探索了参数空间的相当一部分,并结合TIP4P / Ew和TIP4P / 2005水模型系统地测试了性能参数的各个组合。我们观察到描述纯液体TFE的参数存在歧义;但是,它们中的大多数都不能用于TFE /水混合物。我们清楚地证明了平衡TFE-TFE,TFE-水以及水与水之间的相互作用的必要性,只有在参数化过程中采用隐式极化校正才能获得这种平衡。

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