首页> 外文期刊>Journal of chemical theory and computation: JCTC >Evaluation of General and Tailor Made Force Fields via X-ray Thermal Diffuse Scattering Using Molecular Dynamics and Monte Carlo Simulations of Crystalline Aspirin
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Evaluation of General and Tailor Made Force Fields via X-ray Thermal Diffuse Scattering Using Molecular Dynamics and Monte Carlo Simulations of Crystalline Aspirin

机译:通过使用分子动力学和蒙特卡罗模拟的X射线热漫射散射的X射线热漫射散射的一般和量度裁缝的评估

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摘要

We have performed a comparison of the experimental thermal diffuse scattering (TDS) from crystalline Aspirin (form I) to that calculated from molecular dynamics (MD) simulations based on a variety of general force fields and a tailor-made force field (TMFF). A comparison is also made with Monte Carlo (MC) simulations which use a "harmonic network" approach to describe the intermolecular interactions. These comparisons were based on the hypothesis that TDS could be a useful experimental data in validation of such simulation parameter sets, especially when calculations of dynamical properties (e.g., thermodynamic free energies) from molecular crystals are concerned. Currently such a validation of force field parameters against experimental data is often limited to calculation of specific physical properties, e.g., absolute lattice energies usually at 0 K or heat capacity measurements. TDS harvested from in-house or synchrotron experiments comprises highly detailed structural information representative of the dynamical motions of the crystal lattice. Thus, TDS is a well-suited experimental data-driven means of cross validating theoretical approaches targeted at understanding dynamical properties of crystals. We found from the results of our investigation that the TMFF and COMPASS (from the commercial software "Materials Studio") parameter sets gave the best agreement with experiment. From our homologous MC simulation analysis we are able to show that force constants associated with the molecular torsion angles are likely to be a strong contributing factor for the apparent reason why these aforementioned force fields performed better.
机译:我们已经对基于各种一般力场和量身制造的力场(TMFF)进行了由分子动力学(MD)模拟计算的实验热漫射散射(TDS)的比较。还使用使用“谐波网络”方法来描述分子间相互作用的蒙特卡罗(MC)模拟来进行比较。这些比较基于假设,即TDS可以是在验证这种模拟参数集中的有用实验数据,尤其是当涉及来自分子晶体的动态特性(例如,热力学自由能)时。目前,对实验数据的力场参数的这种验证通常限于计算特定物理性质,例如,通常在0 k或热容量测量中的绝对晶格能量。从内部或同步rotron实验中收获的TDS包括具有代表晶格的动态运动的高度详细的结构信息。因此,TDS是一个适用于靶向晶体的动态特性的交叉验证理论方法的良好实验数据驱动装置。我们发现从我们调查的结果中发现了TMFF和指南针(来自商业软件“材料工作室”)参数集与实验相一致。从我们的同源MC仿真分析中,我们能够表明与分子扭转角度相关的力常数可能是对于这些上述力场更好地进行的表观原因可能是一个强大的贡献因素。

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