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用多组态电子结构方法对线性振子-电子耦合模型进行参数化,以研究光激发芘的量子动力学。

Parameterization of a linear vibronic coupling model with multiconfigurational electronic structure methods to study the quantum dynamics of photoexcited pyrene.

作者信息

Aleotti Flavia, Aranda Daniel, Yaghoubi Jouybari Martha, Garavelli Marco, Nenov Artur, Santoro Fabrizio

机构信息

Dipartimento di Chimica Industriale "Toso Montanari," Università di Bologna, Viale del Risorgimento 4, 40136 Bologna, Italy.

Istituto di Chimica dei Composti Organometallici (ICCOM-CNR), Area della Ricerca del CNR, Via Moruzzi 1, I-56124 Pisa, Italy.

出版信息

J Chem Phys. 2021 Mar 14;154(10):104106. doi: 10.1063/5.0044693.

Abstract

With this work, we present a protocol for the parameterization of a Linear Vibronic Coupling (LVC) Hamiltonian for quantum dynamics using highly accurate multiconfigurational electronic structure methods such as RASPT2/RASSCF, combined with a maximum-overlap diabatization technique. Our approach is fully portable and can be applied to many medium-size rigid molecules whose excited state dynamics requires a quantum description. We present our model and discuss the details of the electronic structure calculations needed for the parameterization, analyzing critical situations that could arise in the case of strongly interacting excited states. The protocol was applied to the simulation of the excited state dynamics of the pyrene molecule, starting from either the first or the second bright state (S or S). The LVC model was benchmarked against state-of-the-art quantum mechanical calculations with optimizations and energy scans and turned out to be very accurate. The dynamics simulations, performed including all active normal coordinates with the multilayer multiconfigurational time-dependent Hartree method, show good agreement with the available experimental data, endorsing prediction of the excited state mechanism, especially for S, whose ultrafast deactivation mechanism was not yet clearly understood.

摘要

通过这项工作,我们提出了一种协议,用于使用诸如RASPT2/RASSCF等高精度多组态电子结构方法,并结合最大重叠 diabatic 化技术,对用于量子动力学的线性振子-电子耦合(LVC)哈密顿量进行参数化。我们的方法具有完全的可移植性,可应用于许多激发态动力学需要量子描述的中等大小刚性分子。我们展示了我们的模型,并讨论了参数化所需的电子结构计算细节,分析了在强相互作用激发态情况下可能出现的关键情况。该协议应用于芘分子激发态动力学的模拟,起始于第一或第二激发态(S₁或S₂)。LVC模型通过优化和能量扫描与最先进的量子力学计算进行了基准测试,结果证明非常准确。使用多层多组态含时 Hartree 方法包括所有活性正则坐标进行的动力学模拟,与现有实验数据显示出良好的一致性,支持了对激发态机制的预测,特别是对于S₂,其超快失活机制尚未得到清晰理解。

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