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首页> 外文期刊>Journal of chemical research: reviews and research papers from all branches of chemistry >The synthesis and spectroscopic characterization of (+)-demethoxyaspidospermine: Density functional theory calculations of the structural, electronic, and non-linear optic and spectroscopic properties
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The synthesis and spectroscopic characterization of (+)-demethoxyaspidospermine: Density functional theory calculations of the structural, electronic, and non-linear optic and spectroscopic properties

机译:(+) - 脱氧吡吡吡吡咯胺:密度函数理论计算结构,电子和非线性光学和光谱性能的合成和光谱表征

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摘要

(+)-Demethoxyaspidospermine was synthesized via the acylation of aspidospermidine with acetic anhydride, and the structure was determined by elemental analysis and Fourier-transform infrared and nuclear magnetic resonance spectroscopic tools and was supported by the simulated spectroscopic studies. Next, the stable geometries obtained by the conformational analysis performed at the B3LYP/6-31G(d, p) level were used for further investigations carried out in B3LYP and M06-2X functionals, and Hartree-Fock (HF) method, employed by the 6-311++G(d, p) basis set. Also, the natural bond orbital analysis revealed that the most contribution to the lowering of the stabilization energy came from n -> pi* and pi -> pi* interactions. Moreover, the non-linear optic analysis has shown that the title compound can be a useful agent in the optoelectronic devices because of the optical properties. Also, the chemical reactivity tendency for nucleophilic or electrophilic attack reactions on the compound was evaluated by frontier molecular orbital analysis, and the reactive sites of the compound was shown by highest molecular orbital and lowest unoccupied orbital amplitudes and molecular electrostatic potential diagrams.
机译:(+) - 通过具有乙酸酐的Aspidospermidinine的酰化合成脱氧氧基吡啶,通过元素分析和傅里叶变换红外和核磁共振光谱谱法测定该结构,并通过模拟光谱研究支持。接下来,使用在B3LYP / 6-31G(D,P)水平上进行的构象分析获得的稳定几何形状用于在B3LYP和M06-2X功能中进行的进一步研究,以及所用的Hartree-Fock(HF)方法。 6-311 ++ g(d,p)基础集。此外,天然键轨道分析显示,稳定能量降低的最大贡献来自N - > Pi *和Pi - > Pi *相互作用。此外,非线性光学分析表明,由于光学性质,标题化合物可以是光电器件中的有用剂。此外,通过前沿分子轨道分析评估化合物对化合物对化合物的化学反应性的化学反应性趋势,并且通过最高分子轨道和最低的未占用轨道振荡和分子静电势图表示化合物的反应性位点。

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