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Theoretical and Experimental Spectroscopic Analysis of Cyano-Substituted Styrylpyridine Compounds

机译:氰基取代的苯乙烯基吡啶化合物的理论和实验光谱分析

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摘要

A combined theoretical and experimental study on the structure, infrared, UV-Vis and 1H NMR data of trans-2-(m-cyanostyryl)pyridine, trans-2-[3-methyl-(m-cyanostyryl)] pyridine and trans-4-(m-cyanostyryl)pyridine is presented. The synthesis was carried out with an efficient Knoevenagel condensation using green chemistry conditions. Theoretical geometry optimizations and their IR spectra were carried out using the Density Functional Theory (DFT) in both gas and solution phases. For theoretical UV-Vis and 1H NMR spectra, the Time-Dependent DFT (TD-DFT) and the Gauge-Including Atomic Orbital (GIAO) methods were used, respectively. The theoretical characterization matched the experimental measurements, showing a good correlation. The effect of cyano- and methyl-substituents, as well as of the N-atom position in the pyridine ring on the UV-Vis, IR and NMR spectra, was evaluated. The UV-Vis results showed no significant effect due to electron-withdrawing cyano- and electron-donating methyl-substituents. The N-atom position, however, caused a slight change in the maximum absorption wavelengths. The IR normal modes were assigned for the cyano- and methyl-groups. 1H NMR spectra showed the typical doublet signals due to protons in the trans position of a double bond. The theoretical characterization was visibly useful to assign accurately the signals in IR and 1H NMR spectra, as well as to identify the most probable conformation that could be present in the formation of the styrylpyridine-like compounds.
机译:反式-2-(间氰基苯乙烯基)吡啶,反式2- [3-甲基-(m)的结构,红外,UV-Vis和 1 H NMR数据的理论和实验研究相结合(-氰基苯乙烯基)]吡啶和反式-4-(间-氰基苯乙烯基)吡啶存在。使用绿色化学条件,通过有效的Knoevenagel缩合进行合成。理论几何优化及其红外光谱是使用密度泛函理论(DFT)在气相和液相中进行的。对于理论UV-Vis和 1 H NMR光谱,分别使用了时变DFT(TD-DFT)和包括轨距计(GIAO)的方法。理论表征与实验测量结果相符,显示出良好的相关性。评估了氰基和甲基取代基以及吡啶环中N原子位置对UV-Vis,IR和NMR光谱的影响。 UV-Vis结果显示,由于吸电子的氰基和给电子的甲基取代基没有显着影响。但是,N原子的位置引起最大吸收波长的轻微变化。 IR正常模式被分配给氰基和甲基。 1 H NMR谱图显示典型的双峰信号是由于质子在双键的反式位置。理论上的表征对于在IR和 1 NMR光谱中准确分配信号,以及确定在苯乙烯基吡啶样化合物的形成中可能存在的最可能的构象,非常有用。

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