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A multireference n-electron Valence State Perturbation Theory study of the electronic spectrum of s-tetrazine

机译:s-四嗪电子光谱的多参考n价电子态扰动理论研究

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This paper addresses the study of the electronic spectrum of the s-tetrazine molecule in the ab initio frame making use of the multireference n-electron Valence State Perturbation Theory (NEVPT2). The theoretical description of the excited states of this molecule is complex, because of the different computational requirements of the low-lying excited states which must be treated on an equal footing. More than forty electronic excited states of various nature (n → π*, nn → π*π*, π → π*, nπ → π*π*, and Rydberg) are considered here. Various active spaces are used to reach a good quality zero order description, needed to avoid unrealistic results in the perturbation treatment. The quasi-degenerate perturbation theory must be used in most of the cases, given the presence of a marked mixing among various states. The results here presented have been used to add new information to the interpretation of the experimental spectra. While in many cases previous assignments of the experimental features are confirmed, in various cases they are questioned and new assignments are proposed. With the new assignments, a good agreement is found between experiments and NEVPT2. The comparison with other high level ab initio methods shows that NEVPT2 performs well, being in general in close agreement with Extended-STEOM-CCSD and CC3, while the agreement with CASPT2 and GVVPT2 is less satisfactory (the CASPT2 excitation energies being lower than the NEVPT2 ones by ?0.4 eV). Finally, comparing NEVPT2 with TD-DFT, a reasonable accordance with the values obtained with the PBE0 functional is observed, while the agreement with those computed with the HCTH functional is lower.
机译:本文利用多参考n电子价态微扰理论(NEVPT2),从头开始对s-四嗪分子的电子光谱进行了研究。该分子的激发态的理论描述很复杂,因为低位激发态的计算要求不同,必须在同等条件下进行处理。超过40种不同性质的电子激发态(n→π* ,nn→π* π* ,π→π* ,nπ→π* π* 和Rydberg)。为了避免扰动处理中出现不切实际的结果,需要使用各种活动空间来达到高质量的零级描述。鉴于各种状态之间存在明显的混合,在大多数情况下都必须使用准简并摄动理论。这里介绍的结果已被用来为实验光谱的解释增加新的信息。虽然在许多情况下可以确认先前分配的实验功能,但在各种情况下都可以质疑它们并提出新的分配条件。有了新的任务,在实验和NEVPT2之间找到了很好的协议。与其他高级从头算方法的比较表明,NEVPT2的性能很好,通常与Extended-STEOM-CCSD和CC3紧密一致,而与CASPT2和GVVPT2的一致性较差(CASPT2的激发能低于NEVPT2大约0.4 eV)。最后,将NEVPT2与TD-DFT进行比较,可以观察到合理的符合PBE0功能获得的值,而与HCTH功能计算得出的一致性较低。

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