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Activated sulfonylating agent that undergoes general base-catalyzed hydrolysis by amines in preference to aminolysis

机译:活化的磺酰化剂,通常比胺解更容易被胺进行碱催化水解

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Activated sulfonyl derivatives, similar to acyl ones, usually undergo aminolysis with amines in water as nucleophilic attack by the amine is preferred to hydrolysis. However, despite being active sulfonyl derivatives, four-membered heterocyclic sulfonamides, beta-sultams, do not undergo aminolysis in aqueous solution but preferentially react to give hydrolysis products only. The rate of the reaction of beta-sultams in buffered solutions of simple primary amines shows a first-order dependence on amine concentrations attributed to general base-catalyzed hydrolysis by the amine. Even N-benzyl-4,4-dimethyl-3-oxo-beta-sultam, which is both a beta-sultam and a beta-lactam, undergoes hydrolysis at the sulfonyl center rather than aminolysis at either the sulfonyl or acyl center. The solvent kinetic isotope effects (SKIE, k(2)(H)(O)/k(2)(D)(O)) for the amine-catalyzed hydrolyses are 1.4 and 1.9 for the hydrolysis of N-benzoyl-beta-sultam and N-benzyl-4,4-dimethyl-3-oxo-beta-sultam, respectively, compatible with a general base-catalyzed mechanism. The amine-catalyzed hydrolysis gives a Bronsted beta value of +0.9 for both N-benzoyl beta-sultam and N-benzyl-4,4-dimethyl-3-oxo-beta-sultam, indicating that the general base amine is almost fully protonated in the transition state. A general base-catalyzed mechanism for hydrolysis rather than nucleophilic attack was also deduced for the reaction of N-benzyl-4,4-dimethyl-3-oxo-beta-sultam with carboxylate anions based on a SKIS of 1.7-1.9 and rate constants which fit the Bronsted plot for amines. In contrast to acyl transfer reactions, those for sulfonyl transfer appear to show an inverse reactivity-selectivity relationship-the most active compounds being the most selective. The lack of reactivity of beta-sultams toward amine nucleophiles appears to be related to the mechanism of ring opening of beta-sultams with a decreased reactivity toward amines relative to hydroxide ion, probably related to the expulsion of the relatively poor leaving group amide anion.
机译:与酰基类似,活化的磺酰基衍生物通常在水中与胺进行氨解反应,因为胺的亲核攻击优于水解。然而,尽管是活性磺酰基衍生物,但是四元杂环磺酰胺β-阿磺酰胺在水溶液中不进行氨解,而是优先反应仅得到水解产物。在简单的伯胺缓冲溶液中,β-阿马甜的反应速率显示出对胺浓度的一级依赖性,这归因于胺的一般碱催化水解。甚至是既是β-苏丹酰胺又是β-内酰胺的N-苄基-4,4-二甲基-3-氧代-β-磺酰胺在磺酰基中心进行水解而不是在磺酰基或酰基中心进行氨解。胺催化水解的溶剂动力学同位素效应(SKIE,k(2)(H)(O)/ k(2)(D)(O))为1.4和1.9,用于水解N-苯甲酰基-β- sultam和N-苄基-4,4-二甲基-3-氧代-β-sultam分别与一般的碱催化机理相容。胺催化的水解作用使N-苯甲酰基β-杜鹃花和N-苄基-4,4-二甲基-3-氧代-β-杜鹃花的布朗斯台德β值均为+0.9,这表明一般的碱胺几乎已全部质子化在过渡状态。基于1.7-1.9的SKIS和速率常数,还推导了N-苄基-4,4-二甲基-3-氧代-β-舒马坦与羧酸根阴离子反应的水解而不是亲核攻击的一般碱催化机理。适合布朗斯台德胺的情节。与酰基转移反应相反,用于磺酰基转移的反应似乎表现出相反的反应性-选择性关系-活性最高的化合物选择性最高。 β-sultams对胺亲核试剂缺乏反应性似乎与β-sultams的开环机理有关,相对于氢氧根离子,其对胺的反应性降低,可能与相对较差的离去基团酰胺阴离子的排出有关。

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