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Synthesis and molecular orbital calculations of some benzo-substituted macrocyclic diamides and their corresponding macrocyclic dithiodiamides

机译:一些苯并取代的大环二酰胺及其相应的大环二硫代二酰胺的合成及分子轨道计算

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摘要

A new series of benzo-substituted macrocyclic diamides were prepared by nucleophilic reaction of the appropriate dipotassium salts with the corresponding bis(halo) compounds in refluxing DMF. Treatment of the novel macrocyclic diamides with Lawesson's reagent in refluxing toluene led to the formation of the corresponding macrocyclic dithiodiamides in good yields. Molecular orbital calculations were performed at the semi-empirical level AM1 on some of the studied macrocycles. Thermodynamic functions show that the most stable structures in gas phase that have internal amine groups are less in energy than the other ones that have internal carbonyl groups. The solvent polarity does not appreciably affect the stability trend of the three conformers of each compound due to their comparable dipole moments. A complete and thorough survey of proton affinity (PA) and proton detachment energies (PDE) on each of the possible sites has been performed.
机译:通过适当的二钾盐与相应的双(卤)化合物在回流的DMF中进行亲核反应,制备了一系列新的苯并取代的大环二酰胺。在回流的甲苯中用Lawesson试剂处理新的大环二酰胺,导致以高收率形成相应的大环二硫代二酰胺。在一些研究的大环上,在半经验水平AM1上进行了分子轨道计算。热力学函数表明,具有内部胺基的气相中最稳定的结构比具有内部羰基的其他结构的能量更少。由于它们的可比偶极矩,溶剂极性不会明显影响每种化合物的三个构象异构体的稳定性趋势。已对每个可能位点上的质子亲和力(PA)和质子脱离能(PDE)进行了完整而彻底的调查。

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