Seenithurai Sonai, Chai Jeng-Da
Department of Physics, National Taiwan University, Taipei 10617, Taiwan.
Center for Theoretical Physics and Center for Quantum Science and Engineering, National Taiwan University, Taipei 10617, Taiwan.
Nanomaterials (Basel). 2023 May 10;13(10):1593. doi: 10.3390/nano13101593.
For the ground-state properties of gas-phase nanomolecules with multi-reference character, thermally assisted occupation (TAO) density functional theory (DFT) has recently been found to outperform the widely used Kohn-Sham DFT when traditional exchange-correlation energy functionals are employed. Aiming to explore solvation effects on the ground-state properties of nanomolecules with multi-reference character at a minimal computational cost, we combined TAO-DFT with the PCM (polarizable continuum model). In order to show its usefulness, TAO-DFT-based PCM (TAO-PCM) was used to predict the electronic properties of linear acenes in three different solvents (toluene, chlorobenzene, and water). According to TAO-PCM, in the presence of these solvents, the smaller acenes should have nonradical character, and the larger ones should have increasing polyradical character, revealing striking similarities to the past findings in the gas phase.
对于具有多参考特征的气相纳米分子的基态性质,最近发现当采用传统的交换相关能量泛函时,热辅助占据(TAO)密度泛函理论(DFT)优于广泛使用的Kohn-Sham DFT。为了以最小的计算成本探索溶剂化对具有多参考特征的纳米分子基态性质的影响,我们将TAO-DFT与PCM(极化连续介质模型)相结合。为了展示其有用性,基于TAO-DFT的PCM(TAO-PCM)被用于预测线性并苯在三种不同溶剂(甲苯、氯苯和水)中的电子性质。根据TAO-PCM,在这些溶剂存在的情况下,较小的并苯应该具有非自由基特征,而较大的并苯应该具有增加的多自由基特征,这与过去在气相中的发现显示出惊人的相似性。