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"Spontaneous" 室温下芳香胺-硼烷的脱氢偶联。

"Spontaneous" ambient temperature dehydrocoupling of aromatic amine-boranes.

机构信息

School of Chemistry, University of Bristol, Cantock's Close, Bristol, BS8 1TS, UK.

出版信息

Chemistry. 2012 Apr 10;18(15):4665-80. doi: 10.1002/chem.201103241. Epub 2012 Mar 5.

Abstract

The dehydrocoupling/dehydrogenation behavior of primary arylamine-borane adducts ArNH(2)⋅BH(3) (3 a-c; Ar = a: Ph, b: p-MeOC(6)H(4), c: p-CF(3)C(6)H(4)) has been studied in detail both in solution at ambient temperature as well as in the solid state at ambient or elevated temperatures. The presence of a metal catalyst was found to be unnecessary for the release of H(2). From reactions of 3 a,b in concentrated solutions in THF at 22 °C over 24 h cyclotriborazanes (ArNH-BH(2))(3) (7 a,b) were isolated as THF adducts, 7 a,b⋅THF, or solvent-free 7 a, which could not be obtained via heating of 3 a-c in the melt. The μ-(anilino)diborane [H(2)B(μ-PhNH)(μ-H)BH(2)] (4 a) was observed in the reaction of 3 a with BH(3)⋅THF and was characterized in situ. The reaction of 3 a with PhNH(2) (2 a) was found to provide a new, convenient method for the preparation of dianilinoborane (PhNH)(2)BH (5 a), which has potential generality. This observation, together with further studies of reactions of 4 a, 5 a, and 7 a,b, provided insight into the mechanism of the catalyst-free ambient temperature dehydrocoupling of 3 a-c in solution. For example, the reaction of 4 a with 5 a yields 6 a and 7 a. It was found that borazines (ArN-BH)(3) (6 a-c) are not simply formed via dehydrogenation of cyclotriborazanes 7 a-c in solution. The transformation of 7 a to 6 a is slowly induced by 5 a and proceeds via regeneration of 3 a. The adducts 3 a-c also underwent rapid dehydrocoupling in the solid state at elevated temperatures and even very slowly at ambient temperature. From aniline-borane derivative 3 c, the linear iminoborane oligomer (p-CF(3)C(6)H(4))NBH-NH(p-CF(3)C(6)H(4)) (11) was obtained. The single-crystal X-ray structures of 3 a-c, 5 a, 7 a, 7 b⋅THF, and 11 are discussed.

摘要

已详细研究了仲芳胺-硼烷加合物 ArNH(2)⋅BH(3) (3a-c;Ar = a:Ph,b:p-MeOC(6)H(4),c:p-CF(3)C(6)H(4)) 在环境温度下的溶液中和在环境或升高温度下的固态中的脱氢/脱氢行为。发现释放 H(2)不需要金属催化剂。从 3a,b 在 22°C 下在 THF 中的浓溶液中的反应,在 24 小时内,环三硼嗪 (ArNH-BH(2))(3) (7a,b) 被分离为 THF 加合物 7a,b⋅THF 或无溶剂 7a,这些无法通过在熔体中加热 3a-c 获得。在 3a 与 BH(3)⋅THF 的反应中观察到μ-(苯胺基)二硼烷 [H(2)B(μ-PhNH)(μ-H)BH(2)] (4a),并原位表征。发现 3a 与 PhNH(2) (2a) 的反应为二苯胺基硼烷 (PhNH)(2)BH (5a) 的制备提供了一种新的、方便的方法,具有潜在的通用性。这一观察结果以及对 4a、5a 和 7a、b 的进一步研究,深入了解了溶液中 3a-c 在环境温度下无催化剂脱氢偶联的反应机理。例如,4a 与 5a 的反应生成 6a 和 7a。发现硼嗪 (ArN-BH)(3) (6a-c) 不是简单地通过溶液中环三硼嗪 7a-c 的脱氢形成的。7a 向 6a 的转化是由 5a 缓慢诱导的,通过 3a 的再生进行。在升高的温度下,甚至在环境温度下,加合物 3a-c 在固态中也迅速发生脱氢偶联。从苯胺-硼烷衍生物 3c 中,得到了线性亚氨基硼烷齐聚物(p-CF(3)C(6)H(4))NBH-NH(p-CF(3)C(6)H(4)) (11)。讨论了 3a-c、5a、7a、7b⋅THF 和 11 的单晶 X 射线结构。

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