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Semi-Empirical Computation on Mechanism of Imidazolines and Benzimidazoles Synthesis and Their QSAR Studies

机译:咪唑啉和苯并咪唑合成机理的半经验计算及其QSAR研究

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摘要

A green, mild and anaerobic synthesis of imidazolines and benzimidazoles from aldehydes and diamines using I2/KI/K2CO3/H2O system has been investigated by semi-empirical methods. The observed efficient direction of the above synthesis has been modeled from a comparison of the energies of four possible transition states arising from mono and di additions of iodines in the configured molecules. In the reaction I1 B is the most favorable transition state [TS] which is shown to be 20 Kcal/mol by PM3 analyses. The resulting trends of relative transition states energies are in excellent agreement with the experimental observations. Also, the bond order, bond length, heat of formation is in good agreement to the formation of product B. In order to establish the suitable mechanism of the reaction a quantitative structure activity relationship analysis has been made using hydrophobicity as the molecular descriptor. In this analysis the values of refractivity, polarizability, hydration energy, electron affinity, ionization potential and dipole moment of the compounds have been correlated with their hydrophobicity which has been taken as the molecular property.
机译:通过半经验方法研究了使用I2 / KI / K2CO3 / H2O系统由醛和二胺绿色,温和,厌氧合成咪唑啉和苯并咪唑。根据合成分子中单价和二价碘加成的四种可能过渡态的能量比较,对上述合成方法观察到的有效方向进行了建模。在反应I1B中,最有利的过渡态[TS]由PM3分析显示为20Kcal / mol。相对过渡态能量的最终趋势与实验观察结果非常吻合。而且,键的顺序,键的长度,形成的热与产物B的形成非常一致。为了建立合适的反应机理,已经使用疏水性作为分子描述符进行了定量的结构活性关系分析。在该分析中,化合物的折射率,极化率,水合能,电子亲和力,电离势和偶极矩值已与它们的疏水性相关,已将其视为分子性质。

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