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Modelling vibrational coupling in DNA oligomers: a computational strategy combining QM and continuum solvation models

机译:DNA低聚物中的振动耦合建模:结合QM和连续介质溶剂化模型的计算策略

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In this paper, a computational strategy, based on DFT calculations at the M06-2X level, combined with the polarizable continuum model, the Hessian matrix reconstruction method and the Partial hessian vibrational approach is applied to evaluate inter- and intra-layer vibrational couplings between hydrogen bonded and stacked DNA base pairs. The present work demonstrates that this computational scheme can effectively predict and interpret the vibrational couplings of nucleic acids in solution. The effect of the environment described in a cluster or in a continuum manner is necessary in order to improve the agreement with the experimental values.
机译:本文基于M06-2X水平的DFT计算,结合可极化连续体模型,Hessian矩阵重构方法和Partial hessian振动方法,采用一种计算策略来评估层之间和层内的振动耦合氢键和堆叠的DNA碱基对。本工作表明该计算方案可以有效地预测和解释溶液中核酸的振动耦合。为了改善与实验值的一致性,必须以群集或连续方式描述环境的效果。

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