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An approach towards understanding the structure of complex molecular systems: The case of lower aliphatic alcohols

机译:了解复杂分子系统结构的方法:低级脂肪醇的情况

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摘要

An extensive study of liquid aliphatic alcohols methanol, ethanol, and propanol, applying reverse Monte Carlo modelling as a method of interpretation of diffraction data, is presented. The emphasis is on the evaluation of several computational strategies in view of their suitability to obtain high quality molecular models via the reverse Monte Carlo procedure. A consistent set of distances of closest approach and fixed neighbour constraints applicable to all three investigated systems was developed. An all-atom description is compared with a united-atom approach. The potentialities of employment of neutron diffraction data of completely deuterated and isotopically substituted samples, x-ray diffraction data, and results of either molecular dynamics or Monte Carlo calculations were investigated. Results show that parallel application of x-ray and neutron diffraction data, the latter being from completely deuterated samples, within an all-atom reverse Monte Carlo procedure is the most successful strategy towards attaining reliable, detailed, and well-structured molecular models, especially if the models are subsequently refined with the results of molecular dynamics simulations.
机译:提出了对液态脂族醇甲醇,乙醇和丙醇的广泛研究,并应用反向蒙特卡洛模型作为解释衍射数据的方法。考虑到它们适用于通过反向蒙特卡洛程序获得高质量分子模型的重要性,重点在于对几种计算策略的评估。建立了适用于所有三个研究系统的最接近方法和固定邻居约束的一致距离集。将全原子描述与联合原子方法进行了比较。研究了使用完全氘代和同位素取代的样品的中子衍射数据,X射线衍射数据以及分子动力学或蒙特卡洛计算结果的潜力。结果表明,在全原子反向蒙特卡洛方法中并行应用x射线和中子衍射数据(后者是完全氘化的样品)是获得可靠,详细和结构良好的分子模型的最成功策略,尤其是如果随后通过分子动力学模拟的结果完善了模型。

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