首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Improving density functional tight binding predictions of free energy surfaces for peptide condensation reactions in solution
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APS -APS March Meeting 2017 - Event - Improving density functional tight binding predictions of free energy surfaces for peptide condensation reactions in solution

机译:APS -APS 3月会议2017 - 事件 - 改善溶液中肽缩合反应的自由能表面的密度泛函紧密预测

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摘要

First principles molecular dynamics using highly accurate density functional theory (DFT) is a common tool for predicting chemistry, but the accessible time and space scales are often orders of magnitude beyond the resolution of experiments. Semi-empirical methods such as density functional tight binding (DFTB) offer up to a thousand-fold reduction in required CPU hours and can approach experimental scales. However, standard DFTB parameter sets lack good transferability and calibration for a particular system is usually necessary. Force matching the pairwise repulsive energy term in DFTB to short DFT trajectories can improve the former's accuracy for chemistry that is fast relative to DFT simulation times (extless 10 ps), but the effects on slow chemistry and the free energy surface are not well-known. We present a force matching approach to increase the accuracy of DFTB predictions for free energy surfaces. Accelerated sampling techniques are combined with path collective variables to generate the reference DFT data set and validate fitted DFTB potentials without a priori knowledge of transition states. Accuracy of force-matched DFTB free energy surfaces is assessed for slow peptide-forming reactions by direct comparison to DFT results for particular paths. Extensions to model prebiotic chemistry under shock conditions are discussed.
机译:第一原理使用高度精确的密度功能理论(DFT)是一种用于预测化学的常用工具,但可访问的时间和空间尺度通常是超出实验分辨率的级别。诸如密度功能紧密结合(DFTB)的半经验方法提供高达CPU小时的千倍降低,并且可以接近实验尺度。但是,标准DFTB参数集通常需要缺乏良好的可转换性和特定系统的校准。在DFTB中与短DFT轨迹的成对排斥能量术匹配可以提高前者的化学精度,相对于DFT模拟时间快速(偏开10 PS),但对慢化学和自由能表面的影响是不符合众所周知的。我们提出了一种力量匹配方法,以提高自由能表面的DFTB预测的准确性。加速采样技术与路径集体变量组合以生成参考DFT数据集并验证拟合DFTB电位,而无需先验转换状态。通过与特定路径的DFT结果直接比较,评估力匹配的DFTB自由能表面的准确性。讨论了在休克条件下模拟益生元化学的延伸。

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