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不对称并苯二聚体中的激基复合物稳定性

Exciplex Stabilization in Asymmetric Acene Dimers.

作者信息

Krueger Rachel A, Blanquart Guillaume

出版信息

J Phys Chem A. 2019 Mar 7;123(9):1796-1806. doi: 10.1021/acs.jpca.8b11461. Epub 2019 Feb 21.

Abstract

Excimers play an important role in photochemical processes ranging from singlet fission to DNA damage, and the characteristic red-shift in fluorescence spectra associated with excimer formation can provide information about aggregate formation and the orientation of chromophores. When a mixture of chromophores is present, exciplex formation may lead to spectral characteristics distinct from those of either monomer or the corresponding excimers. To predict the effects of aggregation in a system containing a mixture of small acenes, binding energies and minimum-energy geometries have been calculated for three mixed S exciplexes. Benchmark CASSCF/NEVPT2 multireference binding energies of 18.2, 27.7, and 49.3 kJ/mol are reported for the benzene-naphthalene, benzene-anthracene, and naphthalene-anthracene exciplexes, respectively. TDDFT calculations have been performed using a range of exchange-correlation functionals, showing that many functionals perform inconsistently, and the error in binding energy often depends on the character of the monomer excitation from which the exciplex state is derived. Moderate exciplex stabilization observed for the benzene-naphthalene and naphthalene-anthracene exciplexes results from a mixture of charge transfer and exciton delocalization.

摘要

准分子在从单线态裂变到DNA损伤的光化学过程中起着重要作用,并且与准分子形成相关的荧光光谱中的特征红移可以提供有关聚集体形成和发色团取向的信息。当存在发色团混合物时,激基复合物的形成可能导致与单体或相应准分子不同的光谱特征。为了预测在含有小分子并苯混合物的体系中聚集的影响,已经计算了三种混合S激基复合物的结合能和最低能量几何结构。分别报道了苯-萘、苯-蒽和萘-蒽激基复合物的基准CASSCF/NEVPT2多参考结合能为18.2、27.7和49.3kJ/mol。使用一系列交换相关泛函进行了TDDFT计算,结果表明许多泛函的表现不一致,并且结合能的误差通常取决于激基复合物状态所源自的单体激发的性质。在苯-萘和萘-蒽激基复合物中观察到的适度激基复合物稳定化是由电荷转移和激子离域的混合导致的。

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