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首页> 外文期刊>Journal of the Chemical Society, Perkin Transactions 2 >Non-steady-state kinetic studies of the real kinetic isotope effects and Arrhenius activation parameters for the proton transfer reactions of 9,10-dimethylanthracene radical cation with pyridine bases
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Non-steady-state kinetic studies of the real kinetic isotope effects and Arrhenius activation parameters for the proton transfer reactions of 9,10-dimethylanthracene radical cation with pyridine bases

机译:9,10-二甲基蒽自由基阳离子与吡啶碱的质子转移反应的真实动力学同位素效应和Arrhenius活化参数的非稳态动力学研究

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摘要

The kinetics of the reactions between 9,10-dimethylanthracene radical cation and 2,6-diethylpyridine (DEP) inndichloromethane–Bu4NPF6 (0.2 M) as well as that with 2,6-dimethylpyridine (LUT) in acetonitrile–Bu4NPF6 (0.1 M)nwere studied at temperatures ranging from 252 to 312 K. In the time period before steady-state was reached for bothnreaction systems at all temperatures, the apparent deuterium kinetic isotope effects (KIEapp) were observed tonincrease with extent of reaction. The KIEapp–extent of reaction profiles provide strong evidence for a two-stepnmechanism [eqns. (i),(ii)] consisting of reversible complex formation prior to rate determining proton transfer.nResolution of the kinetics into the relevant microscopic rate constants resulted in real deuterium kinetic isotopeneffects (KIEreal) which are much larger than KIEapp and were observed to increase markedly with decreasingntemperature. Values of KIEreal ranged from 62 to 247. It is concluded that a significant degree of quantumnmechanical tunneling is involved for both reaction systems. Activation parameters for apparent and microscopicnrate constants are discussed with reference to the proton tunneling effect.
机译:9,10-二甲基蒽自由基阳离子与2,6-二乙基吡啶(DEP)在二氯甲烷-Bu4NPF6(0.2 M)中的反应动力学以及与2,6-二甲基吡啶(LUT)在乙腈-Bu4NPF6(0.1 M)中的反应动力学在252至312 K的温度范围内进行了研究。在所有温度下两个反应体系均达到稳态之前的一段时间内,随着反应程度的增加,观察到了明显的氘动力学同位素效应(KIEapp)。 KIEapp反应程度的范围为两步机制[eqns。 (i),(ii)]由速率确定质子转移之前的可逆复合物形成组成。n将动力学分解为相关的微观速率常数会导致实际的氘代动力学等开效应(KIEreal),其远大于KIEapp,并且观察到会增加温度显着降低。 KIEreal的值介于62到247之间。得出的结论是,两个反应系统都涉及大量的量子力学隧穿。参照质子隧穿效应讨论了表观和微观速率常数的激活参数。

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