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Assessment of the Potential Energy Hypersurfaces in Thymine within Multiconfigurational Theory: CASSCF vs. CASPT2

机译:在多构型理论中评估胸腺嘧啶的潜在能量超表面:CASSCF与CASPT2

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摘要

The present study provides new insights into the topography of the potential energy hypersurfaces (PEHs) of the thymine nucleobase in order to rationalize its main ultrafast photochemical decay paths by employing two methodologies based on the complete active space self-consistent field (CASSCF) and the complete active space second-order perturbation theory (CASPT2) methods: (i) CASSCF optimized structures and energies corrected with the CASPT2 method at the CASSCF geometries and (ii) CASPT2 optimized geometries and energies. A direct comparison between these strategies is drawn, yielding qualitatively similar results within a static framework. A number of analyses are performed to assess the accuracy of these different computational strategies under study based on a variety of numerical thresholds and optimization methods. Several basis sets and active spaces have also been calibrated to understand to what extent they can influence the resulting geometries and subsequent interpretation of the photochemical decay channels. The study shows small discrepancies between CASSCF and CASPT2 PEHs, displaying a shallow planar or twisted 1(ππ*) minimum, respectively, and thus featuring a qualitatively similar scenario for supporting the ultrafast bi-exponential deactivation registered in thymine upon UV-light exposure. A deeper knowledge of the PEHs at different levels of theory provides useful insight into its correct characterization and subsequent interpretation of the experimental observations. The discrepancies displayed by the different methods studied here are then discussed and framed within their potential consequences in on-the-fly non-adiabatic molecular dynamics simulations, where qualitatively diverse outcomes are expected.
机译:本研究提供了对胸腺嘧啶核碱基的势能超表面(PEHs)的拓扑结构的新见解,以便通过采用两种基于完整活性空间自洽场(CASSCF)和分子筛的方法来合理化其主要的超快光化学衰变路径。完整的主动空间二阶扰动理论(CASPT2)方法:(i)CASSCF优化的结构和能量在CASSCF几何形状下用CASPT2方法校正,并且(ii)CASPT2优化的几何形状和能量。在这些策略之间进行了直接比较,从而在静态框架内产​​生了质量上相似的结果。基于各种数值阈值和优化方法,进行了许多分析,以评估所研究的这些不同计算策略的准确性。还对几个基集和活动空间进行了校准,以了解它们可以在多大程度上影响所得的几何形状以及对光化学衰变通道的后续解释。该研究显示CASSCF和CASPT2 PEH之间的微小差异,分别显示出一个浅的平面或扭曲的 1 (ππ*)最小值,因此在定性上具有相似的场景,可支持在中注册的超快速双指数失活暴露在紫外线下的胸腺嘧啶。在不同理论水平上对PEHs的更深入了解,可为深入了解PEHs的正确表征和随后对实验观察的解释提供帮助。然后,在飞行中非绝热分子动力学模拟中讨论并构筑了本文研究的不同方法所显示的差异,并在其潜在后果之内进行了框架化,其中预期会有质的差异。

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