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电荷分离、有效浓度和聚集态对相转移催化苯酚烷基化反应的影响。

Effects of charge separation, effective concentration, and aggregate formation on the phase transfer catalyzed alkylation of phenol.

机构信息

Roger Adams Laboratory, Department of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.

出版信息

J Am Chem Soc. 2012 Aug 15;134(32):13415-29. doi: 10.1021/ja304808u. Epub 2012 Aug 2.

DOI:10.1021/ja304808u
PMID:22856542
Abstract

The factors that influence the rate of alkylation of phenol under phase transfer catalysis (PTC) have been investigated in detail. Six linear, symmetrical tetraalkylammonium cations, Me(4)N(+), Et(4)N(+), (n-Pr)(4)N(+), (n-Bu)(4)N(+), (n-Hex)(4)N(+), and (n-Oct)(4)N(+), were examined to compare the effects of cationic radius and lipophilicity on the rate of alkylation. Tetraalkylammonium phenoxide·phenol salts were prepared, and their intrinsic reactivity was determined from initial alkylation rates with n-butyl bromide in homogeneous solution. The catalytic activity of the same tetraalkylammonium phenoxides was determined under PTC conditions (under an extraction mechanism) employing quaternary ammonium bromide catalysts. In homogeneous solution the range in reactivity was small (6.8-fold) for Me(4)N(+) to (n-Oct)(4)N(+). In contrast, under PTC conditions a larger range in reactivity was observed (663-fold). The effective concentration of the tetraalkylammonium phenoxides in the organic phase was identified as the primary factor influencing catalyst activity. Additionally, titration of active phenoxide in the organic phase confirmed the presence of both phenol and potassium phenoxide aggregates with (n-Bu)(4)N(+), (n-Hex)(4)N(+), and (n-Oct)(4)N(+), each with a unique aggregate stoichiometry. The aggregate stoichiometry did not affect the PTC initial alkylation rates.

摘要

已经详细研究了在相转移催化(PTC)下影响苯酚烷基化速率的因素。考察了六种线性对称的四烷基铵阳离子,Me(4)N(+)、Et(4)N(+)、(n-Pr)(4)N(+)、(n-Bu)(4)N(+)、(n-Hex)(4)N(+)和(n-Oct)(4)N(+),以比较阳离子半径和亲脂性对烷基化速率的影响。制备了四烷基铵苯氧盐·苯酚盐,并从与正丁基溴在均相溶液中的初始烷基化速率确定了它们的固有反应性。在 PTC 条件下(在萃取机制下),使用季铵溴化物催化剂测定了相同的四烷基铵苯氧盐的催化活性。在均相溶液中,从 Me(4)N(+)到(n-Oct)(4)N(+)的反应性范围很小(6.8 倍)。相比之下,在 PTC 条件下,观察到更大的反应性范围(663 倍)。四烷基铵苯氧盐在有机相中的有效浓度被确定为影响催化剂活性的主要因素。此外,在有机相中的活性苯氧盐的滴定证实了在(n-Bu)(4)N(+)、(n-Hex)(4)N(+)和(n-Oct)(4)N(+)存在苯酚和钾苯氧盐聚集体,每个聚集体都具有独特的聚合计量。聚合计量对 PTC 初始烷基化速率没有影响。

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