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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Assessment of noncollinear spin-flip Tamm-Dancoff approximation time-dependent density-functional theory for the photochemical ring-opening of oxirane
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Assessment of noncollinear spin-flip Tamm-Dancoff approximation time-dependent density-functional theory for the photochemical ring-opening of oxirane

机译:非共线自旋翻转Tamm-Dancoff近似时变密度泛函理论对环氧乙烷光化学开环的评价

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摘要

Under the usual assumption of noninteracting v-representability, density-functional theory (DFT) together with time-dependent DFT (TDDFT) provide a formally exact single-reference method suitable for the theoretical description of the electronic excited-states of large molecules, and hence for the description of excited-state potential energy surfaces important for photochemistry. The quality of this single-reference description is limited in practice by the need to use approximate exchange-correlation functionals. In particular it is far from clear how well approximations used in contemporary practical TDDFT calculations can describe funnel regions such as avoided crossings and conical intersections. These regions typically involve biradical-like structures associated with bond breaking and conventional wisdom would seem to suggest the need to introduce explicit double excitation character to describe these structures. Although this is lacking in ordinary spin-preserving (SP) TDDFT, it is present to some extent in spin-flip (SF) TDDFT. We report our tests of Wang-Ziegler noncollinear SF-TDDFT within the Tamm-Dancoff approximation for describing the avoided crossing in the C_(2v) CC ring-opening reaction of oxirane and for describing the conical intersection relevant for the more physical asymmetric CO ring-opening reaction of oxirane. Comparisons are made with complete active space self-consistent field and quantum Monte Carlo benchmark results from two previous papers on the subject [J. Chem. Phys., 2007, 127, 164111; ibid 129, 2008, 124108]. While the avoided crossing in the C_(2v) pathway is found to be reasonably well described, the method was found to be only partially successful for the conical intersection (CX) associated with the physically more important asymmetric pathway. The origin of the difficulties preventing the noncollinear SF-TDDFT method from giving a completely satisfactory description of the CX was traced back to the inability of SF-TDDFT based upon a single triplet reference state to correlate all potentially relevant configurations involving not just two but three nearly degenerate orbitals (n, σ_(CO), and σ*_(CO)). This article is also the first report of our implementation of SF-TDDFT within the deMon2k program.
机译:在非相互作用的v可表示性的通常假设下,密度泛函理论(DFT)与时变DFT(TDDFT)一起提供了形式精确的单参考方法,适用于大分子电子激发态的理论描述,并且因此,对于光化学重要的激发态势能表面的描述。在实践中,此单一参考说明的质量受到使用近似交换相关功能的需求的限制。特别是,目前尚不清楚在当代实际TDDFT计算中使用的近似值如何描述漏斗区域,例如避免的交叉和圆锥形交叉。这些区域通常涉及与键断裂相关的双自由基状结构,常规观点似乎表明需要引入显式的双激发特征来描述这些结构。尽管在普通的自旋保留(SP)TDDFT中缺少此功能,但在某种程度上在自旋翻转(SF)TDDFT中存在。我们报告我们在Tamm-Dancoff近似中对Wang-Ziegler非共线SF-TDDFT的测试,以描述环氧乙烷的C_(2v)CC开环反应中避免的交叉以及描述与更物理不对称的CO环相关的圆锥形交点-环氧乙烷的开环反应。比较了完整的活动空间自洽场和先前关于该主题的两篇论文的量子蒙特卡洛基准结果[J.化学物理.2007,127,164111;同上129,2008,124108]。虽然可以合理地很好地描述了在C_(2v)路径中避免的交叉,但发现该方法对于与物理上更重要的不对称路径相关的圆锥形交叉点(CX)仅部分成功。阻止非共线SF-TDDFT方法对CX进行完全令人满意的描述的困难的根源可以追溯到SF-TDDFT无法基于单个三元组参考状态关联所有可能涉及的配置,而不仅涉及两个,而且涉及三个几乎退化的轨道(n,σ_(CO)和σ* _(CO))。本文也是我们在deMon2k程序中实施SF-TDDFT的第一份报告。

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