Cho Eunkyung, Coropceanu Veaceslav, Brédas Jean-Luc
Department of Chemistry and Biochemistry The University of Arizona, Tucson, Arizona 85721-0088, United States.
J Am Chem Soc. 2020 Oct 14;142(41):17782-17786. doi: 10.1021/jacs.0c08997. Epub 2020 Sep 30.
Neutral donor-acceptor (D-A) organic radicals have recently attracted a great deal of attention as promising luminescent materials due to their strong doublet emission. Here, we consider a series of emitters based on substituted triarylamine (TAA) donors and a radical-carrying perchlorotriphenylmethyl (PTM) acceptor. We evaluate, by means of quantum-chemical calculations and theoretical modeling, how chemical substitution affects the electronic structures and radiative and nonradiative decay rates. Our calculations show that the radiative decay rates are dominated in all instances by the electronic coupling between the lowest excited state, which has charge-transfer (CT) character, and the ground state. On the other hand, the nonradiative decay rates in the case of TAA-PTM radicals that have high CT energies are defined by the electronic hybridization of the CT state with local excitations (LE) on the PTM moiety; also, these nonradiative rates deviate significantly from the gap law dependence that is observed in the TAA-PTM radicals that have low CT energies. These findings underscore that hybridization of the emissive state with high-energy states can, in analogy with the intensity borrowing effect commonly invoked for radiative transitions, enhance as well the nonradiative decay rates. Our results highlight that in order to understand the emissive properties of D-A radicals, it is required that the electronic hybridization of the CT states with both the ground and the LE states be properly considered.
中性供体-受体(D-A)有机自由基最近作为有前景的发光材料引起了广泛关注,因为它们具有强烈的双重态发射。在此,我们考虑了一系列基于取代三芳基胺(TAA)供体和携带自由基的全氯三苯甲基(PTM)受体的发光体。我们通过量子化学计算和理论建模评估了化学取代如何影响电子结构以及辐射和非辐射衰减率。我们的计算表明,在所有情况下,辐射衰减率均由具有电荷转移(CT)特征的最低激发态与基态之间的电子耦合主导。另一方面,具有高CT能量的TAA-PTM自由基的非辐射衰减率由CT态与PTM部分上的局域激发(LE)的电子杂化定义;此外,这些非辐射率与在具有低CT能量的TAA-PTM自由基中观察到的能隙定律依赖性有很大偏差。这些发现强调,与通常用于辐射跃迁的强度借用效应类似,发射态与高能态的杂化也可以提高非辐射衰减率。我们的结果突出表明,为了理解D-A自由基的发光特性,需要适当考虑CT态与基态和LE态的电子杂化。