首页> 外文期刊>Journal of the American Chemical Society >MICELLE-INDUCED CHANGES IN THE SOLVATION OF CARBOCATIONS - EFFECT OF SODIUM DODECYL SULFATE MICELLES ON THE ENANTIOMER-SPECIFIC OXYGEN EXCHANGE REACTIONS OF 1-PHENYL-1-ETHANOL AND 1-PHENYL-1-BUTANOL
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MICELLE-INDUCED CHANGES IN THE SOLVATION OF CARBOCATIONS - EFFECT OF SODIUM DODECYL SULFATE MICELLES ON THE ENANTIOMER-SPECIFIC OXYGEN EXCHANGE REACTIONS OF 1-PHENYL-1-ETHANOL AND 1-PHENYL-1-BUTANOL

机译:胶束在碳固溶中的变化-十二烷基硫酸钠胶束对1-苯基-1-乙醇和1-苯基-1-丁醇的对映体比氧交换反应的影响

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The enantiomer-specific oxygen exchange rate constants of 1-phenyl-1-ethanol (1) and 1-phenyl-1-butanol (2) as a function of the change in configuration at the chiral center in micellar sodium dodecyl sulfate (SDS) at 64.5 +/- 0.5 degrees C have been determined and found to differ from their values in nonmicellar media. Addition of 0.1 M SDS to the aqueous reaction media reduces the overall rate of racemization and selectively alters the enantiomer-specific oxygen exchange reactions with the solvent for both alcohols. Although the rate constant for oxygen exchange of the Cl hydroxyl with the solvent with inversion of configuration, k(EI), decreases to the same extent as that for the overall racemization, that for exchange with retention, k(E), increases markedly in SDS media. For 1 in water, k(E)/k(rac) = 0.35 +/- 0.05; in 0.1 M SDS, k(E)/k(rac) = 0.63 +/- 0.01. For 2 in water, k(E)/k(rac) = 0.47 +/- 0.03; in 0.1 M SDS, k(E)/k(rac) = 1.67 +/- 0.04. The larger effect of SDS on the reactions of 2 reflects the larger association constant, K-assoc, between this alcohol and micellar SDS: K-assoc = (5.7 +/- 0.7) x 10(2) far 2 and (1.3 +/- 0.1) x 10(2) for 1. A 60% reduction of in NMR longitudinal relaxation times, T-l, for the methyl protons of both 1-phenylalkanols by 0.1 M SDS is consistent with the alcohols being in a more constrained environment in micellar media than in unorganized media. Although the kinetic results suggest that micellar SDS strongly perturbs the solvation sphere of the intermediate carbocations, the identity of the H-1 MMR chemical shifts of 1 and 2 in water and in 0.1 M SDS indicates, however, that the polarity of this microenvironment is similar to that of water. [References: 50]
机译:1-苯基-1-乙醇(1)和1-苯基-1-丁醇(2)的对映体特异性氧交换速率常数与胶束十二烷基硫酸钠(SDS)中手性中心构型变化的关系已确定在64.5 +/- 0.5摄氏度下的温度在非胶束介质中与它们的值不同。向水性反应介质中添加0.1 M SDS会降低外消旋的总体速率,并选择性地改变两种醇与溶剂的对映体特异性氧交换反应。尽管在构型反转的情况下,Cl羟基与溶剂的氧交换速率常数k(EI)降低到与总外消旋化速率常数相同的程度,但与保留度交换的速率常数k(E)在下式中显着增加SDS媒体。对于水中的1,k(E)/ k(rac)= 0.35 +/- 0.05;在0.1 M SDS中,k(E)/ k(rac)= 0.63 +/- 0.01。对于水中的2,k(E)/ k(rac)= 0.47 +/- 0.03;在0.1 M SDS中,k(E)/ k(rac)= 1.67 +/- 0.04。 SDS对2的反应的影响较大,反映出该醇与胶束SDS之间的缔合常数K-缔合较大:K-缔合=(5.7 +/- 0.7)x 10(2)远2和(1.3 + / -0.1)x 10(2)表示1。两种1-苯基链烷醇的甲基质子的NMR纵向弛豫时间T1降低0.1 M SDS的60%,这与醇在胶束中处于更受限的环境是一致的媒体比没有组织的媒体。尽管动力学结果表明胶束SDS强烈干扰了中间碳正离子的溶剂化领域,但在水中以及在0.1 M SDS中H-1 MMR化学位移的标识分别为1和2,这表明该微环境的极性是类似于水。 [参考:50]

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