Ahmad Shawana, Eng Julien, Penfold Thomas J
Chemistry─School of Natural and Environmental Sciences, Newcastle University, Newcastle Upon-Tyne NE1 7RU, U.K.
J Phys Chem A. 2024 Sep 26;128(38):8035-8044. doi: 10.1021/acs.jpca.4c03711. Epub 2024 Sep 17.
Controlling the architecture of organic molecules is an important aspect in tuning the functional properties of components in organic electronics. For purely organic thermally activated delayed fluorescence (TADF) molecules, design is focused upon orthogonality orientated donor and acceptor units. In these systems, the rotational dynamics around the donor and acceptor bond has been shown to be critical for activating TADF; however, too much conformational freedom can increase the non-radiative rate, leading to a large energy dispersion of the emitting states and conformers, which do not exhibit TADF. To date, control of the motion around the D-A bond has focused upon steric hindrance. In this work, we computationally investigate eight proposed donor-acceptor molecules, exhibiting a B-N bond between the donor and acceptor. We compare the effect of steric hindrance and noncovalent interactions, achieved using oxygen (sulfur) boron heteroatom interactions, in exerting fine conformational control of the excited state dynamics. This work reveals the potential for judiciously chosen noncovalent interactions to strongly influence the functional properties of TADF emitters, including the accessible conformers and the energy dispersion associated with the charge transfer states.
控制有机分子的结构是调节有机电子器件中组件功能特性的一个重要方面。对于纯有机热活化延迟荧光(TADF)分子,设计重点在于正交取向的供体和受体单元。在这些体系中,围绕供体和受体键的旋转动力学已被证明对激活TADF至关重要;然而,过多的构象自由度会增加非辐射速率,导致发射态和构象异构体的能量大量分散,从而无法展现TADF。迄今为止,对D-A键周围运动的控制主要集中在空间位阻上。在这项工作中,我们通过计算研究了八个提出的供体-受体分子,它们在供体和受体之间存在B-N键。我们比较了使用氧(硫)-硼杂原子相互作用实现的空间位阻和非共价相互作用对激发态动力学进行精细构象控制的效果。这项工作揭示了明智选择的非共价相互作用对强烈影响TADF发射体功能特性的潜力,包括可及的构象异构体以及与电荷转移态相关的能量分散。