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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Time-Dependent Long-Range-Corrected Density-Functional Tight-Binding Method Combined with the Polarizable Continuum Model
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Time-Dependent Long-Range-Corrected Density-Functional Tight-Binding Method Combined with the Polarizable Continuum Model

机译:时间依赖的长距离校正密度功能紧密结合方法与可极化的连续体模型相结合

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In this study, excited-state free energies and geometries were efficiently evaluated using a linear-response time-dependent long-range-corrected density-functional tight-binding method integrated with the polarizable continuum model (TD-LC-DFTB2/PCM). Although the LC-DFTB method required the evaluation of the exchange-type term, which was moderately computationally expensive, a single evaluation of the excited-state gradient for a system consisting of more than 1000 atoms in a vacuum was completed within 30 min using one CPU core. Benchmark calculations were conducted for 3-hydroxyflavone, which exhibits dual emission: the absorption and enol-form emission wavelengths calculated by TD-LC-DFTB2/PCM agreed well with those predicted based on the density functional theory using a long-range corrected functional; however, there was a large error in the predicted keto-form emission wavelength. Further benchmark calculations for more than 20 molecules indicated that the conventional TD-DFTB method underestimated the absorption and 0-0 transition energies compared with those which were measured experimentally, whereas the TD-LC-DFTB2 method systematically overestimated these metrics. Nevertheless, the agreement of the results of the TD-LC-DFTB2 method with those obtained by the CAM-B3LYP method demonstrates the potential of the TD-LC-DFTB2/PCM method. Moreover, changing the range separation parameter to 0.15 minimized this deviation.
机译:在本研究中,使用与可极化连续型模型(TD-LC-DFTB2 / PCM)集成的线性响应时间依赖性的长距离校正的密度功能紧密功能紧密粘合方法有效地评估激发 - 状态自由能和几何。尽管LC-DFTB方法所需的交换型术语的评估,其适度计算昂贵,但是在30分钟内完成了在真空中由5000多个原子组成的系统的兴奋状态梯度的单一评估在30分钟内完成了一个CPU核心。对3-羟基氟酮进行基准计算,其表现出双发射:通过使用远程校正功能的基于密度泛函理论预测的那些,通过TD-LC-DFTB2 / PCM计算的吸收和烯醇形成发射波长;然而,预测的典型释放波长中存在很大的错误。超过20个分子的进一步基准计算表明,与实验测量的那些相比,传统的TD-DFTB方法低估了吸收和0-0转变能量,而TD-LC-DFTB2方法系统地高估了这些度量。尽管如此,TD-LC-DFTB2方法的结果与CAM-B3LYP方法获得的结果的协议表明了TD-LC-DFTB2 / PCM方法的电位。此外,将范围分离参数改变为0.15,最小化该偏差。

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