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Synthesis and Raman spectroscopic investigation of a new self-assembly monolayer material 4-N-phenyl-N-(3-methylphenyl)-amino-benzoic acid for organic light-emitting devices

机译:一种新型自组装单层材料4- N-苯基-N-(3-甲基苯基)-氨基-苯甲酸的有机发光器件的合成和拉曼光谱研究

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摘要

We have synthesized 4-[N-phenyl-N-(3-methylphenyl)-amino]-benzoic acid (4-[PBA]) and investigated its molecular vibrations by infrared and Raman spectroscopies as well as by calculations based on the density functional theory (DFT) approach. The Fourier transform (FT) Raman, dispersive Raman and FT-IR spectra of 4-[PBA] were recorded in the solid phase. We analyzed the optimized geometric structure and energies of 4-[PBA] in the ground state. Stability of the molecule arising from hyperconjugative interactions and charge delocalization was studied using natural bond orbital analysis. The results show that change in electron density in the δ* and π* antibonding orbitals and E 2 energies confirm the occurrence of intramolecular charge transfer within the molecule. Theoretical calculations were performed at the DFT level using the Gaussian 09 program. Selected experimental bands were assigned and characterized on the basis of the scaled theoretical wavenumbers by their total energy distribution. The good agreement between the experimental and theoretical spectra allowed positive assignment of the observed vibrational absorption bands. Finally, the calculation results were applied to simulate the Raman and IR spectra of the title compound, which show agreement with the observed spectra.
机译:我们合成了4- [N-苯基-N-(3-甲基苯基)-氨基]-苯甲酸(4- [PBA]),并通过红外和拉曼光谱以及基于密度泛函的计算研究了其分子振动。理论(DFT)方法。在固相中记录了4- [PBA]的傅立叶变换(FT)拉曼光谱,色散拉曼光谱和FT-IR光谱。我们分析了基态下4- [PBA]的最佳几何结构和能量。使用自然键轨道分析研究了超共轭相互作用和电荷离域引起的分子稳定性。结果表明,δ*和π*反键轨道中电子密度的变化以及E 2能量证实了分子内分子内电荷转移的发生。使用高斯09程序在DFT级别上进行了理论计算。分配了选定的实验频带,并根据缩放后的理论波数通过其总能量分布进行了表征。实验光谱和理论光谱之间的良好一致性允许对观察到的振动吸收带进行正分配。最后,将计算结果应用于模拟标题化合物的拉曼光谱和红外光谱,与观察到的光谱一致。

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