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Counterintuitive electron localisation from density-functional theory with polarisable solvent models

机译:基于可极化溶剂模型的密度泛函理论的反直觉电子定位

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Exploration of the solvated electron phenomena using density-functional theory (DFT) generally results in prediction of a localised electron within an induced solvent cavity. However, it is well known that DFT favours highly delocalised charges, rendering the localisation of a solvated electron unexpected. We explore the origins of this counterintuitive behaviour using a model Kevan-structure system. When a polarisable-continuum solvent model is included, it forces electron localisation by introducing a strong energetic bias that favours integer charges. This results in the formation of a large energetic barrier for charge-hopping and can cause the self-consistent field to become trapped in local minima thus converging to stable solutions that are higher in energy than the ground electronic state. Finally, since the bias towards integer charges is caused by the polarisable continuum, these findings will also apply to other classical polarisation corrections, as in combined quantum mechanics and molecular mechanics (QM/MM) methods. The implications for systems beyond the solvated electron, including cationic DNA bases, are discussed. (C) 2015 AIP Publishing LLC.
机译:使用密度泛函理论(DFT)探索溶剂化电子现象通常可以预测诱导的溶剂腔内的局部电子。然而,众所周知,DFT倾向于高度离域的电荷,这使得溶剂化电子的局域化变得出乎意料。我们使用模型Kevan结构系统探索了这种违反直觉的行为的起源。当包括可极化连续溶剂模型时,它会通过引入有利于整数电荷的强能偏置来迫使电子局部化。这导致形成用于电荷跳跃的大的高能垒,并可能导致自洽场陷入局部极小值,从而收敛到能量高于基态电子态的稳定解。最后,由于对整数电荷的偏置是由可极化连续体引起的,因此,这些发现也将适用于其他经典极化校正,如组合的量子力学和分子力学(QM / MM)方法。讨论了对溶剂化电子以外的系统的影响,包括阳离子DNA碱基。 (C)2015 AIP Publishing LLC。

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