Institute of Organic Chemistry with Centre of Phytochemistry, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., Bl. 9, 1113 Sofia, Bulgaria.
Institute of Electronics, Bulgarian Academy of Sciences, 72 Tsarigradsko Chaussee Blvd., 1784 Sofia, Bulgaria.
Molecules. 2023 Jan 27;28(3):1248. doi: 10.3390/molecules28031248.
A series of OLED-relevant compounds, consisting of 1,3,5-triazine core linked to various aromatic arms by amino group, has been synthesized and characterized. The studied compounds exist in solution as a mixture of two conformers, a symmetric propeller and asymmetric conformer, in which one of the aromatic arms is rotated around the C-N bond. At temperatures below -40 °C, the VT NMR spectra in DMF-d7 are in a slow exchange regime, and the signals of two conformers can be elucidated. At temperatures above 100 °C, the VT NMR spectra in DMSO-d6 are in a fast exchange regime, and the averaged spectra can be measured. The ratio of symmetric and asymmetric conformers in DMF-d7 varies from 14:86 to 50:50 depending on the substituents. The rotational barriers of symmetric and asymmetric conformers in DMF-d7 were measured for all compounds and are in the interval from 11.7 to 14.7 kcal/mol. The ground-state energy landscapes of the studied compounds, obtained by DFT calculations, show good agreement with the experimental rotational barriers. The DFT calculations reveal that the observed chemical exchange occurs by the rotation around the C(1,3,5-triazine)-N bond. Although some of the compounds are potentially tautomeric, the measured absorption and emission spectra do not indicate proton transfer neither in the ground nor in the excited state.
已经合成并表征了一系列与 OLED 相关的化合物,这些化合物由氨基连接的 1,3,5-三嗪核心与各种芳香臂组成。研究的化合物在溶液中以两种构象的混合物存在,一种是对称的螺旋桨构象,另一种是非对称构象,其中一个芳香臂围绕 C-N 键旋转。在低于-40°C 的温度下,在 DMF-d7 中的 VT NMR 光谱处于缓慢交换状态,可以阐明两种构象的信号。在高于 100°C 的温度下,在 DMSO-d6 中的 VT NMR 光谱处于快速交换状态,可以测量平均光谱。根据取代基的不同,DMF-d7 中对称和不对称构象的比例从 14:86 变化到 50:50。所有化合物在 DMF-d7 中的对称和不对称构象的旋转势垒均进行了测量,其范围为 11.7 至 14.7 kcal/mol。通过 DFT 计算得到的研究化合物的基态能景观与实验旋转势垒吻合良好。DFT 计算表明,观察到的化学交换是通过围绕 C(1,3,5-三嗪)-N 键的旋转发生的。尽管一些化合物可能是互变异构的,但测量的吸收和发射光谱既不在基态也不在激发态表明质子转移。