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Fine‐Tuning the Photophysics of Donor‐Acceptor (D‐A3) Thermally Activated Delayed Fluorescence Emitters Using Isomerisation

机译:Fine‐Tuning the Photophysics of Donor‐Acceptor (D‐A3) Thermally Activated Delayed Fluorescence Emitters Using Isomerisation

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Abstract Here two D–A3 regioisomers, comprising three dibenzothiophene‐S,S‐dioxide acceptor units attached to a central triazatruxene core, are studied. Both molecules show thermally activated delayed fluorescence (TADF), however, the efficiency of the TADF mechanism is strongly affected by the D–A substitution position. The meta‐ substituted emitter (1 b) shows a slightly higher‐lying singlet charge transfer state and a lower‐lying triplet state than that observed in the para‐ substituted emitter (1 a), resulting in a larger singlet–triplet splitting (ΔEST) of 0.28 eV compared to only 0.01 eV found in 1 a. As expected, this ΔEST difference strongly impacts the reverse intersystem crossing (rISC) rates and the para‐ isomer 1 a exhibits a much faster delayed fluorescence emission. Calculations show that the triplet energy difference between the two isomers is due to steric hindrance variances along the donor–acceptor rotation axis in these molecules: as 1 b is less restricted, rotation of its acceptor unit leads to a lower T1 energy, further away from the region of high density of states (the region where larger vibronic coupling is found, favouring rISC). Therefore, our results show how the substitution pattern has a marked effect on triplet state energies and character, verifying the key structural designs for highly efficient TADF materials.
机译:抽象这两个D-A3 regioisomers组成三硫芴所致,年代二氧化碳受体单元连接到一个中央triazatruxene核心研究。然而,延迟荧光(TADF)TADF效率机制是强烈数字-模拟替代位置的影响。地理元替换发射器(1 b)显示了一个略高躺单线态电荷转移状态和低量躺三重态比观察对位检测替换发射器(1),导致一个更大的singlet-triplet分裂(ΔEST)0.28电动汽车相比,只有0.01 eV 1中找到。预期,这种ΔEST差异强烈影响相反的系统(rISC)利率和交叉对位检测异构体1展示一个快得多延迟荧光发射。三重态能量之间的区别两个同分异构体是由于位阻差异在这些新的旋转轴分子:1 b是更少的限制,旋转的其受体单元导致T1能量较低,远离密度高的地区各州(地区较大的振动耦合发现,有利于rISC)。说明替换模式有一个标志影响三重态能量和性格,验证的关键结构的设计高度高效TADF材料。

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