首页> 外文期刊>Journal of chemical theory and computation: JCTC >Nonequilibrium Solvent Polarization Effects in Real-Time Electronic Dynamics of Solute Molecules Subject to Time-Dependent Electric Fields: A New Feature of the Polarizable Continuum Model
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Nonequilibrium Solvent Polarization Effects in Real-Time Electronic Dynamics of Solute Molecules Subject to Time-Dependent Electric Fields: A New Feature of the Polarizable Continuum Model

机译:在依赖于时间依赖电场的溶质分子的实时电子动力学中的实时电子动力学效应不足:可极化连续体模型的新功能

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摘要

We develop an extension of the time-dependent equation-ofmotion formulation of the polarizable continuum model (EOM-TDPCM) to introduce nonequilibrium cavity field effects in quantum mechanical calculations of solvated molecules subject to time-dependent electric fields. This method has been implemented in Octopus, a state-of-the-art code for real-space, real-time time-dependent density functional theory (RT-TDDFT) calculations. To show the potential of our methodology, we perform EOM-TDPCM/RT-TDDFT calculations of trans-azobenzene in water and in other model solvents with shorter relaxation times. Our results for the optical absorption spectrum of trans-azobenzene show (i) that cavity field effects have a clear impact in the overall spectral shape and (ii) that an accurate description of the solute shape (as the one provided within PCM) is key to correctly account for cavity field effects.
机译:我们开发了可极化连续模型(EOM-TDPCM)的时间依赖式方程的扩展,以在经受时间依赖的电场的溶剂化分子的量子力学计算中引入非QuiLibiquirium腔体效应。 该方法已在章鱼中实现,用于实时空间的最先进的代码,实时时间依赖性密度泛函(RT-TDDFT)计算。 为了展示我们的方法论的潜力,我们在水中和其他模型溶剂中进行反式偶氮苯的EOM-TDPCM / RT-TDDFT计算,具有较短的松弛时间。 我们的结果对于反式偶氮苯的光学吸收光谱(I),腔场效应在整体光谱形状和(ii)中具有明显的影响,(ii),溶质形状的准确描述(如在PCM内提供的)是键 正确考虑腔体场效应。

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