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Entropic Contributions to Rate Accelerations in Enzymic and Intramolecular Reactions and the Chelate Effect

机译:熵促进酶和分子内反应速率加速和螯合效应

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摘要

It is pointed out that translational and (overall) rotational motions provide the important entropic driving force for enzymic and intramolecular rate accelerations and the chelate effect; internal rotations and unusually severe orientational requirements are generally of secondary importance. The loss of translational and (overall) rotational entropy for 2 → 1 reactions in solution is ordinarily on the order of 45 entropy units (e.u.) (standard state 1 M, 25°C); the translational entropy is much larger than 8 e.u. (corresponding to 55 M). Low-frequency motions in products and transition states, about 17 e.u. for cyclopentadiene dimerization, partially compensate for this loss, but “effective concentrations” on the order of 108 M may be accounted for without the introduction of new chemical concepts or terms.
机译:需要指出的是,平移运动和(整体)旋转运动为酶和分子内速率的加速以及螯合作用提供了重要的熵驱动力。内部旋转和异常苛刻的方向要求通常是次要的。溶液中2→1个反应的平移和(整体)旋转熵的损失通常约为45个熵单位(e.u.)(标准状态1 M,25°C);平移熵远大于8e.u。 (对应于55 M)。产物和过渡态的低频运动,约17e.u。对于环戊二烯二聚反应,部分补偿了这种损失,但是在不引入新化学概念或术语的情况下,可以解释10 8 M量级的“有效浓度”。

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