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离子液体中的碳正离子形成反应。

Carbocation-forming reactions in ionic liquids.

作者信息

Creary Xavier, Willis Elizabeth D, Gagnon Madeleine

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, Indiana 46556, USA.

出版信息

J Am Chem Soc. 2005 Dec 28;127(51):18114-20. doi: 10.1021/ja0536623.

Abstract

A number of trifluoroacetates, mesylates, and triflates have been studied in ionic liquids. Several lines of evidence indicate that all of these substrates react via ionization to give carbocationic intermediates. For example, cumyl trifluoroacetates give mainly the elimination products, but the Hammett rho+ value of -3.74 is consistent with a carbocationic process. The analogous exo-2-phenyl-endo-3-deutero-endo-bicyclo[2.2.1]hept-2-yl trifluoroacetate gives an elimination where loss of the exo-hydrogen occurs from a cationic intermediate. 1-Adamantyl mesylate and 2-adamantyl triflate react to give simple substitution products derived from capture of 1- and 2-adamantyl carbocations by the residual water in the ionic liquid. The triflate derivative of pivaloin, trans-2-phenylcyclopropylcarbinyl mesylate, 2,2-dimethoxycyclobutyl triflate, the mesylate derivative of diethyl (phenylhydroxymethyl)-thiophosphonate, and Z-1-phenyl-5-trimethylsilyl-3-penten-1-yl trifluoroacetate all give products derived carbocation rearrangements (kDelta processes). anti-7-Norbornenyl mesylate gives products with complete retention of configuration, indicative of involvement of the delocalized 7-norbornenyl cation. 1,6-Methano[10]annulen-11-yl triflate reacts in [BMIM][NTf2] to give 1,6-methano[10]annulen-11-ol, along with naphthalene, an oxidized product derived from loss of trifluoromethanesulfinate ion. Analogous loss of CF3SO2- can be seen in reaction of PhCH(CF3)OTf. Ionic liquids are therefore viable solvents for formation of carbocationic intermediates via kC and kDelta processes.

摘要

人们已经在离子液体中研究了多种三氟乙酸酯、甲磺酸酯和三氟甲磺酸酯。多条证据表明,所有这些底物都是通过离子化反应生成碳正离子中间体。例如,三氟乙酸枯基酯主要生成消除产物,但其哈米特ρ+值为 -3.74,这与碳正离子过程一致。类似地,外消旋 -2-苯基-内消旋-3-氘代-内消旋-双环[2.2.1]庚-2-基三氟乙酸酯发生消除反应时,外消旋氢从阳离子中间体上失去。1-金刚烷基甲磺酸酯和2-金刚烷基三氟甲磺酸酯反应生成简单的取代产物,这些产物是由离子液体中的残留水捕获1-和2-金刚烷基碳正离子而形成的。新戊醛的三氟甲磺酸酯衍生物、反式-2-苯基环丙基甲基甲磺酸酯、2,2-二甲氧基环丁基三氟甲磺酸酯、二乙基(苯基羟甲基)硫代膦酸酯的甲磺酸酯衍生物以及Z-1-苯基-5-三甲基甲硅烷基-3-戊烯-1-基三氟乙酸酯都生成源自碳正离子重排(kΔ过程)的产物。反式-7-降冰片烯基甲磺酸酯生成构型完全保持的产物,这表明离域的7-降冰片烯基阳离子参与了反应。1,6-亚甲基[10]轮烯-11-基三氟甲磺酸酯在[BMIM][NTf2]中反应生成1,6-亚甲基[10]轮烯-11-醇以及萘,萘是一种因失去三氟甲烷亚磺酸盐离子而形成的氧化产物。在PhCH(CF3)OTf的反应中也可以看到类似的CF3SO2-的损失。因此,离子液体是通过kC和kΔ过程形成碳正离子中间体的可行溶剂。

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