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Describing polymer polarizability with localized orbital scaling correction in density functional theory

机译:用密度函数理论的局部轨道矫正校正来描述聚合物极化性

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Polarizability reflects the response of the molecular charge distribution to an applied external electric field and thus closely relates to the molecular electron density. For the calculation of polarizability within density functional theory (DFT), it is well known that conventional density functional approximations (DFAs) greatly overestimate the results for polymers with long chains and the pi -conjugated system. This is a manifestation of the delocalization error of the commonly used DFAs-they normally produce too delocalized electron density and underestimate the total energy for systems with fractional charge character, which occurs for long molecules in a longitudinal electric field. Thus, to achieve an accurate description of polarizabilities for polymeric molecular systems from DFT, applying DFAs with minimal delocalization error is very important. In this work, we use the recently developed localized orbital scaling correction (LOSC) to the conventional DFAs, which has been shown to largely eliminate the delocalization error, to calculate and study the polarizabilities of three classic polymers, polyyne, polyacetylene, and hydrogen chain. The results from this work demonstrate that applying LOSC to conventional DFAs with self-consistent field calculations can largely improve the description of polarizability from DFT calculations and the improved quality of electron density in LOSC leads to the improved results of polarizability of the polymers. However, the improvement is not complete and adjustment of the parameters in the LOSC method can further improve the accuracy to reach the level similar to the MP2 method. This work also points to the direction for the further development of LOSC in self-consistent calculations.
机译:极化率反映了分子电荷分布对外加电场的响应,因此与分子电子密度密切相关。对于密度泛函理论(DFT)中的极化率计算,众所周知,传统的密度泛函近似(DFA)大大高估了长链聚合物和pi共轭体系的结果。这是常用DF的离域误差的一种表现,因为它们通常会产生过多的离域电子密度,并低估具有分数电荷特性的系统的总能量,而分数电荷特性发生在纵向电场中的长分子中。因此,为了从DFT中准确描述聚合物分子系统的极化率,应用DFAs并使其离域误差最小是非常重要的。在这项工作中,我们使用最近发展的局域轨道标度校正(LOSC)来计算和研究三种经典聚合物的极化率:聚炔、聚乙炔和氢链,该校正已被证明在很大程度上消除了离域误差。这项工作的结果表明,将LOSC应用于具有自洽场计算的常规DFA,可以极大地改善DFT计算中对极化率的描述,并且LOSC中电子密度的改善导致聚合物极化率的改善结果。然而,改进并不完全,调整LOSC方法中的参数可以进一步提高精度,达到与MP2方法类似的水平。这项工作也为LOSC在自洽计算中的进一步发展指明了方向。

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