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Solvatochromism and pH effect on the emission of a triphenylimidazole-phenylacrylonitrile derivative: experimental and DFT studies

机译:溶剂变色和pH对三苯基咪唑-苯基丙烯腈衍生物排放的影响:实验和DFT研究

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In this work, a study of the photophysical properties in different solvents and at different pH values of a luminogenic compound with a donor–π–acceptor (D–π–A) structure was carried out. The compound ( Z )-3-(4-(4,5-diphenyl-1 H -imidazol-2-yl)phenyl)-2-phenylacrylonitrile ( 2 ) was synthesized and characterized by SCXRD, FT-IR, ~(1) H NMR, ~(13) C NMR, EIMS, UV-Vis absorption and fluorescence. The SCXRD characterization reveals a monoclinic system, P 2 _(1) / c , with Z = 4 and an imidazole core having hydrogen bonding with respect to water molecules present in the asymmetric unit. It leads to a strong π–π-interaction in the solid state. The fluorescence λ _(max) emission of the powder and thin film was observed at 563 nm and 540 nm respectively. Several degrees of positive solvatochromic fluorescence were observed due to different molecular conformations in various solvents. When the pH of the compound was changed with HCl or NaOH, a shift in the wavelength of emission was observed in a reversible manner. At pH 2, the λ _(max) of emission was at 541 nm whereas at pH 14 there were two emissions at 561 nm and 671 nm. Due to their good emission in the solid state, compound 2 was tested as an emitting layer in OLEDs; the devices showed an acceptable performance with a luminance average of 450 cd m ~(?2) . The band gap was analyzed by optical absorption, cyclic voltammetry measurement and DFT calculations.
机译:在这项工作中,对具有施主-π-受体(D-π-A)结构的发光化合物在不同溶剂和不同pH值下的光物理性质进行了研究。合成了化合物(Z)-3-(4-(4,5-二苯基-1 H-咪唑-2-基)苯基)-2-苯基丙烯腈(2)并用SCXRD,FT-IR,〜(1 1 H NMR,〜(13)C NMR,EIMS,UV-Vis吸收和荧光。 SCXRD表征揭示了单斜晶系P 2 _(1)/ c,其中Z = 4,并且咪唑核心相对于不对称单元中存在的水分子具有氢键。在固态状态下会导致强烈的π-π相互作用。分别在563nm和540nm处观察到粉末和薄膜的荧光λ_(max)发射。由于在各种溶剂中的分子构型不同,因此观察到了几种程度的溶剂化变色荧光。当用HCl或NaOH改变化合物的pH值时,以可逆的方式观察到发射波长的变化。在pH 2下,发射的λ_(max)在541 nm处,而在pH 14下,在561 nm和671 nm处有两个发射。由于化合物2在固态时具有良好的发射性,因此将其作为OLED中的发射层进行了测试;器件显示出可接受的性能,平均亮度为450 cd m〜(?2)。通过光吸收,循环伏安法测量和DFT计算来分析带隙。

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