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首页> 外文期刊>The Journal of Organic Chemistry >Conversion and origin of normal and abnormal temperature dependences of kinetic isotope effect in hydride transfer reactions
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Conversion and origin of normal and abnormal temperature dependences of kinetic isotope effect in hydride transfer reactions

机译:氢化物转移反应中动力学同位素效应的正常温度和异常温度依赖性的转换和起源

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The effects of substituents on the temperature dependences of kinetic isotope effect (KIE) for the reactions of the hydride transfer from the substituted 5-methyl-6-phenyl-5,6-dihydrophenanthridine (G-PDH) to thioxanthylium (TX ~+) in acetonitrile were examined, and the results show that the temperature dependences of KIE for the hydride transfer reactions can be converted by adjusting the nature of the substituents in the molecule of the hydride donor. In general, electron-withdrawing groups can make the KIE to have normal temperature dependence, but electron-donating groups can make the KIE to have abnormal temperature dependence. Thermodynamic analysis on the possible pathways of the hydride transfer from G-PDH to TX ~+ in acetonitrile suggests that the transfers of the hydride anion in the reactions are all carried out by the concerted one-step mechanism whether the substituent is an electron-withdrawing group or an electron-donating group. But the examination of Hammett-type free energy analysis on the hydride transfer reactions supports that the concerted one-step hydride transfer is not due to an elementary chemical reaction. The experimental values of KIE at different temperatures for the hydride transfer reactions were modeled by using a kinetic equation formed according to a multistage mechanism of the hydride transfer including a returnable charge-transfer complex as the reaction intermediate; the real mechanism of the hydride transfer and the root that why the temperature dependences of KIE can be converted as the nature of the substituents are changed were discovered.
机译:氢化物从取代的5-甲基-6-苯基-5,6-二氢菲啶(G-PDH)转移到噻吨基(TX〜+)的反应中,取代基对动力学同位素效应(KIE)的温度依赖性的影响检查了乙腈中的氢化物,结果表明,通过调节氢化物供体分子中取代基的性质,可以转换KIE对氢化物转移反应的温度依赖性。通常,吸电子基团可使KIE具有正常的温度依赖性,而给电子基团可使KIE具有异常的温度依赖性。对乙腈中G-PDH转移至TX〜+的氢化物可能途径的热力学分析表明,无论取代基是否吸电子,反应中氢化物阴离子的转移均通过协调一致的一步机制进行。基或给电子基团。但是,对氢化物转移反应进行的哈米特型自由能分析研究表明,一致的一步式氢化物转移并非源于基本的化学反应。通过使用根据氢化物转移的多级机理形成的动力学方程来模拟不同温度下氢化物转移反应的KIE实验值,其中包括可返回的电荷转移复合物作为反应中间体。发现了氢化物转移的真正机理和根源,即为什么随着取代基的性质改变,KIE的温度依赖性可以转变。

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