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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Synthesis, characterization, and spectroscopic investigation of benzoxazole conjugated Schiff bases
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Synthesis, characterization, and spectroscopic investigation of benzoxazole conjugated Schiff bases

机译:苯并恶唑共轭席夫碱的合成,表征和光谱研究

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摘要

Two Schiff bases were synthesized by reaction of 2-(4′-aminophenyl) benzoxazole derivatives with 4-N,N-diethylaminobenzaldehyde. UV - visible (UV - vis) and steady-state fluorescence in solution were applied in order to characterize its photophysical behavior. The Schiff bases present absorption in the UV region with fluorescence emission in the blue-green region, with a large Stokes' shift. The UV - vis data indicates that each dye behaves as two different chromophores in solution in the ground state. The fluorescence emission spectra of the dye 5a show that an intramolecular proton transfer (ESIPT) mechanism takes place in the excited state, whereas a twisted internal charge transfer (TICT) state is observed for the dye 5b. Theoretical calculations were performed in order to study the conformation and polarity of the molecules at their ground and excited electronic states. Using density functional theory (DFT) methods at theoretical levels BLYP/Aug-SV(P) for geometry optimizations and B3LYP/6-311++G(2d,p) for single-point energy evaluations, the calculations indicate that the lowest energy conformations are in all cases nonplanar and that the dipole moments of the excited state relaxed structures are much larger than those of the ground state structures, which corroborates the experimental UV - vis absorption results.
机译:通过2-(4'-氨基苯基)苯并恶唑衍生物与4-N,N-二乙基氨基苯甲醛的反应合成了两个席夫碱。应用紫外可见光(UV-vis)和溶液中的稳态荧光来表征其光物理行为。席夫碱在紫外线区域呈现吸收,在蓝绿色区域呈现荧光发射,斯托克斯位移较大。 UV-vis数据表明,每种染料在基态下在溶液中表现为两种不同的发色团。染料5a的荧光发射光谱表明,分子内质子转移(ESIPT)机制在激发态下发生,而染料5b观察到扭曲的内部电荷转移(TICT)态。为了研究分子在其基态和激发电子态下的构象和极性,进行了理论计算。使用密度泛函理论(DFT)方法在理论水平BLYP / Aug-SV(P)进行几何优化和在B3LYP / 6-311 ++ G(2d,p)进行单点能量评估,计算结果表明最低的能量构象在所有情况下都是非平面的,并且激发态弛豫结构的偶极矩比基态结构的偶极矩大得多,这证实了实验的UV-vis吸收结果。

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