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Solubility of paracetamol in ethanol by molecular dynamics using the extended Einstein crystal method and experiments

机译:使用延伸的Einstein晶体法和实验,通过分子动力学通过分子动力学和实验对乙酰氨基酚溶解度

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Li and co-workers [Li et al., J. Chem. Phys. 146, 214110 (2017)1 have recently proposed a methodology to compute the solubility of molecular compounds from first principles, using molecular dynamics simulations. We revise and further explore their methodology that was originally applied to naphthalene in water at low concentration. In particular, we compute the solubility of paracetamol in an ethanol solution at ambient conditions. For the simulations, we used a force field that we previously reparameterized to reproduce certain thermodynamic properties of paracetamol but not explicitly its solubility in ethanol. In addition, we have determined the experimental solubility by performing turbidity measurements using a Crystal16 over a range of temperatures. Our work serves a dual purpose: (i) methodologically, we clarify how to compute, with a relatively straightforward procedure, the solubility of molecular compounds and (ii) applying this procedure, we show that the solubility predicted by our force field (0.085 +/- 0.014 in mole ratio) is in good agreement with the experimental value obtained from our experiments and those reported in the literature (average 0.0585 +/- 0.004), considering typical deviations for predictions from first principle methods. The good agreement between the experimental and the calculated solubility also suggests that the method used to reparameterize the force field can be used as a general strategy to optimize force fields for simulations in solution. Published under license by AIP Publishing.
机译:Li和同事[Li等人。,J。化学式物理。 146,214110(2017)1最近已经提出了一种方法来计算从第一原理分子化合物的溶解度,使用分子动力学模拟。我们修订并进一步探索,最初在低浓度应用于萘它们在水中的方法。特别是,我们计算乙酰氨基酚的溶解性在环境条件下的乙醇溶液。对于模拟,我们使用我们先前重新参数重现扑热息痛的某些热力学性质,但没有明确其在乙醇中溶解性的力场。此外,我们已经确定通过执行使用Crystal16在温度范围内的浊度测量实验溶解度。我们的工作用于双重目的:(ⅰ)方法上,我们阐明如何计算,具有相对简单的过程,分子化合物以及(ii)将这个过程中的溶解度,我们表明,由我们的力场(0.085预测的溶解度+ / - 在摩尔比0.014)与从我们的实验获得的实验值和那些在文献中(平均0.0585 +/- 0.004),考虑从第一原理方法预测典型偏差报道一致。实验和计算的溶解度之间的良好的一致性还表明,用于重新参数化的力场的方法,可以用作一般策略,以在溶液中的模拟优化力场。通过AIP发布在许可证下发布。

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