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Thermodynamic Parameters of Elementary Steps for 35-Disubstituted14-Dihydropyridines To Release Hydride Anions in Acetonitrile

机译:35-二取代基本步骤的热力学参数14-二氢吡啶类化合物在乙腈中释放出氢化阴离子

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摘要

A series of 3,5-disubstituted 1,4-dihydropyridine derivatives including the derivative with two chiral centers, >6H (R2 = CH3, CH2Ph), as a new type of organic hydride source were synthesized and characterized. The thermodynamic driving forces (defined as enthalpy changes or standard redox potentials) of the 6 elementary steps for the organic hydrides to release hydride ions in acetonitrile were measured by isothermal titration calorimetry and electrochemical methods. The impacts of the substituents and functional groups bearing the N1 and C3/C5 positions on the thermodynamic driving forces of the 6 elementary steps were examined and analyzed. Moreover, the results showed that the reaction mechanism between the chiral organic hydride and activated ketone (ethyl benzoylformate) was identified as the concerted hydride transfer pathway based on the thermodynamic analysis platform. These valuable and crucial thermodynamic parameters will provide a broadly beneficial impact on the applications of 3,5-disubstituted 1,4-dihydropyridine derivatives in organic synthesis and pharmaceutical chemistry.
机译:一系列3,5-二取代的1,4-二氢吡啶衍生物,包括具有两个手性中心> 6H (R 2 = CH3,CH2Ph)的衍生物合成并表征了有机氢化物源。通过等温滴定热法和电化学方法测量了有机氢化物在乙腈中释放氢离子的6个基本步骤的热力学驱动力(定义为焓变或标准氧化还原电势)。考察并分析了取代基和带有N1和C3 / C5位置的官能团对6个基本步骤热力学驱动力的影响。此外,结果表明,基于热力学分析平台,手性有机氢化物与活性酮(苯甲酰基甲酸乙酯)之间的反应机理被确定为协同的氢化物转移途径。这些重要的重要热力学参数将对3,5-二取代的1,4-二氢吡啶衍生物在有机合成和药物化学中的应用提供广泛的有益影响。

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