Laboratório de Estudos Computacionais em Sistemas Moleculares, eCsMolab, Departamento de Química, ICEx, Universidade Federal de Minas Gerais, 31270-901, Pampulha, Belo Horizonte, MG Brazil.
J Chem Theory Comput. 2023 Apr 25;19(8):2316-2326. doi: 10.1021/acs.jctc.2c01288. Epub 2023 Apr 6.
In this article, the one-effective mode Marcus-Jortner-Levich (MJL) theory and the classical Marcus theory for electron transfer were applied to estimate the internal conversion rate constant, , of organic molecules and a Ru-based complex, all belonging to the Marcus inverted region. For this, the reorganization energy was calculated using the minimum energy conical intersection point to account for more vibrational levels, correcting the density of states. The results showed good agreement with experimental and theoretically determined , with a small overestimation by the Marcus theory. Also, molecules less dependent on the solvent effects, like benzophenone, presented better results than molecules with an expressive dependence, like 1-aminonaphthalene. Moreover, the results suggest that each molecule possesses unique normal modes leading to the excited state deactivation that does not necessarily match the X-H bond stretching, as previously suggested.
在本文中,我们应用单有效态马库斯-约尔特-莱维奇(MJL)理论和经典的马库斯理论来估算有机分子和钌基配合物的内转换速率常数,它们都属于马库斯倒转区域。为此,我们使用最低能量的交叉点来计算重组能,以考虑更多的振动能级,从而修正态密度。结果与实验和理论确定的 ,具有良好的一致性,马库斯理论略有高估。此外,像二苯甲酮这样对溶剂效应依赖性较小的分子,比具有明显依赖性的分子(如 1-氨基萘)表现出更好的结果。此外,结果表明,每个分子都具有独特的导致激发态失活的本征模态,这不一定与之前所提出的 X-H 键拉伸相匹配。