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首页> 外文期刊>ACS Omega >NB-Type Electronic Asymmetric Compounds as Potential Blue-Color TADF Emitters: Steric Hindrance, Substitution Effect, and Electronic Characteristics
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NB-Type Electronic Asymmetric Compounds as Potential Blue-Color TADF Emitters: Steric Hindrance, Substitution Effect, and Electronic Characteristics

机译:NB型电子不对称化合物作为潜在的蓝色TADF发射体:立体阻碍,取代效应和电子特性

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This article is devoted to the theoretical study of the effects of a connection pattern and stereo hindrance of different π-bridges, nitrogen-containing donors, and boron-containing acceptors on the electrooptic properties of NB-type electronic asymmetric compounds in conventional D?π–A frameworks by the density functional theory (DFT) and time-dependent DFT (TD-DFT) approaches. By introducing three different connection groups (?O–, ?CH_(2)–, and ?CMe_(2)?) and guided by structural rationality, we formed 30 NB-type molecules, which have been classified into four types: D?π–A, D–X1?π–A, D?π–X1–A, and D–X1?π–X2–A (Xn are connection groups). Then, the energy gaps (ΔE _(ST)) between the first singlet and triplet excited states were evaluated by TD-LC-ωPBE with the optimal values of ω*, as well as an approximate method, which only considers the interaction between highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO). It is found that for the compounds with strong vibronic coupling, the calculated ΔE _(ST) defined as the difference of vertical excitation energies largely deviates from the experimental result. The consistency between the estimated and experimental values indicates that ΔE _(ST) is predominantly determined by the frontier molecular orbitals, which can be tuned by adjusting the modular overlap between HOMO and LUMO or the orientation of the donor and acceptor groups. Accompanied with the other electronic and optical properties, our study suggests that the interaction mode, D?π–X1–A, the modified D?π–A system with a rigidly fixed acceptor and a relatively free donor, can serve as a valuable molecular design pattern for new blue-colored thermally activated delayed fluorescence (TADF) emitters. Specifically, our calculations predict that ARD-BZN-2CMe_(2)-PYN and its relatives might have excellent potential as TADF emitters.
机译:本文致力于理论研究不同π桥,含氮供体和含硼受体的连接模式和立体势垒对常规D?π中NB型电子不对称化合物的电光性能的影响。 –密度泛函理论(DFT)和时变DFT(TD-DFT)方法的框架。通过引入三个不同的连接基团(?O – 、? CH_(2)–和?CMe_(2)?)并在结构合理性的指导下,我们形成了30个NB型分子,这些分子已被分为四种类型:D? π–A,D–X1?π–A,D?π–X1–A和D–X1?π–X2–A(X 是连接组)。然后,通过TD-LC-ωPBE用最佳的ω*值以及近似方法评估第一单重态与三重态激发态之间的能隙(ΔE_(ST))。最高占据分子轨道(HOMO)与最低未占据分子轨道(LUMO)之间的相互作用。已经发现,对于具有强振动耦合的化合物,计算的ΔE_(ST)定义为垂直激发能的差,大大偏离了实验结果。估计值和实验值之间的一致性表明ΔE_(ST)主要由前沿分子轨道确定,可以通过调节HOMO和LUMO之间的模数重叠或供体和受体基团的方向进行调节。结合其他电子和光学性质,我们的研究表明,相互作用模式D?π–X1-A,具有刚性固定受体和相对自由供体的修饰D?π–A系统可以作为有价值的分子新的蓝色热激活延迟荧光(TADF)发射器的设计模式。具体而言,我们的计算预测ARD-BZN-2CMe_(2)-PYN及其亲属可能具有极好的潜力,成为TADF发射体。

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