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α-(2,6-二甲基苯基)乙烯基锂的动力学:如何控制与快速竞争酮对混合不充分引起的误差。

Kinetics of α-(2,6-Dimethylphenl)vinyllithium: How To Control Errors Caused by Inefficient Mixing with Pairs of Rapidly Competing Ketones.

机构信息

Department Chemie, Ludwig-Maximilians-Universität München , Butenandtstrasse 5-13 (Haus F), 81377 München, Germany.

出版信息

J Org Chem. 2017 Mar 17;82(6):2843-2854. doi: 10.1021/acs.joc.6b02686. Epub 2017 Feb 24.

Abstract

Kinetic studies are a suitable tool to disclose the role of tiny reagent fractions. The title compound 2 reacted in a kinetic reaction order of 0.5 (square root of its concentration) with an excess of the electrophiles ClSiMe, 1-bromobutane (n-BuBr), or 1-iodobutane (n-BuI) at 32 °C in EtO or in hydrocarbon solvents. This revealed that the tiny (NMR-invisible) amount of a deaggregated equilibrium component (presumably monomeric 2) was the reactive species, whereas the disolvated dimer 2 was only indirectly involved as a supply depot. Selectivity data (relative rate constants κ) were collected from competition experiments with the faster reactions of 2 in THF and the addition reactions of 2 to carbonyl compounds. This provided the rate sequences of EtC═O > dicyclopropyl ketone > t-Bu-C(═O)-Ph > diisopropyl ketone ≫ t-BuC═O > ClSiMe > n-BuI > n-BuBr ≈ (bromomethyl)cyclopropane (but t-BuC═O < ClSiMe in THF only) and also of cyclopropanecarbaldehyde > acetone ≥ t-Bu-CH═O. It is suggested that a deceivingly depressed selectivity (1 < κ < k/k), caused by inefficient microscopic mixing of a reagent X with two competing substrates A and B, may become evident toward zero deviation from the correlation line of the usual inverse (1/T) linear temperature dependence of ln κ.

摘要

动力学研究是揭示微量试剂分数作用的合适工具。标题化合物 2 在 32°C 的 EtO 或烃溶剂中与过量的亲电试剂 ClSiMe、1-溴丁烷(n-BuBr)或 1-碘丁烷(n-BuI)以 0.5 的动力学反应级数(其浓度的平方根)进行反应,这表明微小(NMR 不可见)量的离解平衡组分(推测为单体 2)是反应性物质,而溶剂化二聚体 2 仅作为供应库间接参与。选择性数据(相对速率常数 κ)是通过与 THF 中 2 的较快反应和 2 对羰基化合物的加成反应的竞争实验收集的。这提供了 EtC═O > 二环丙基酮 > t-Bu-C(═O)-Ph > 二异丙基酮 > t-BuC═O > ClSiMe > n-BuI > n-BuBr ≈ (溴甲基)环丙烷(但 t-BuC═O 在 THF 中仅小于 ClSiMe)和环丙甲酰醛>丙酮≥t-Bu-CH═O 的速率顺序。有人提出,由于试剂 X 与两种竞争底物 A 和 B 的微观混合效率低下,导致选择性(1 < κ < k/k)出现令人误解的降低,这种情况可能会明显偏离通常的反比(1/T)ln κ 的线性温度依赖性的相关线。

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