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Ionic-Liquid-Promoted Decaborane Dehydrogenative Alkyne-Insertion Reactions: A New Route to o-Carboranes

机译:离子液体促进的十硼烷脱氢炔烃插入反应:邻甲硼烷的新途径

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摘要

Unlike in conventional organic solvents, where Lewis base catalysts are required, decaborane dehydrogenative alkyne-insertion reactions proceed rapidly in biphasic ionic-liquid/toluene mixtures with a wide variety of terminal and internal alkynes, thus providing efficient, one-step routes to functional o-carborane 1-R-1,2-C2B10H11 and 1-R-2-R'-1,2-C2B10H10 derivatives, including R = C6H5 - (1), C6H13- (2), HC C-(CH2)(5)- (3), (1-C2B10H11)-(CH2)(5)- (4), CH3CH2C(O)OCH2- (5), (C2H5)(2)NCH2- (6), NC-(CH2)(3)- (7), 3-HC C-C6H4- (8), (1-C2B10H11)-1,3-C6H4- (9), HC C-CH2-O-CH2- (10); R,R' = C2H5- (11); R = HOCH2-, R' = CH3- (12); R = BrCH2-; R' = CH3- (13); R = H2C=C(CH3)-, R' = C2H5- (14). The best results were obtained from reactions with only catalytic amounts of bmimCl (1-butyl-3-methylimidazolium chloride), where in many cases reaction times of less than 20 min were required. The experimental data for these reactions, the results observed for the reactions of B10H13- salts with alkynes, and the computational studies reported in the third paper in this series all support a reaction sequence involving (1) the initial ionic liquid promoted formation of the B10H13- anion, (2) addition of B10H13- to the alkyne to form an arachno-R,R'-C2B10H13- anion, and (3) protonation of arachno-R,R'-C2B10H13- to form the final neutral 1-R-2-R'-1,2-C2B10H10 product with loss of hydrogen.
机译:与需要路易斯碱催化剂的常规有机溶剂不同,十硼烷脱氢炔烃插入反应会在带有多种末端和内部炔烃的双相离子-液体/甲苯混合物中快速进行,从而提供了有效的一步法制取官能团-碳氢化合物1-R-1,2-C2B10H11和1-R-2-R'-1,2-C2B10H10衍生物,包括R = C6H5-(1),C6H13-(2),HC C-(CH2)( 5)-(3),(1-C2B10H11)-(CH2)(5)-(4),CH3CH2C(O)OCH2-(5),(C2H5)(2)NCH2-(6),NC-(CH2 )(3)-(7),3-HC C-C6H4-(8),(1-C2B10H11)-1,3-C6H4-(9),HC C-CH2-O-CH2-(10); R,R'= C 2 H 5-(11); R = HOCH 2-,R'= CH 3-(12); R = BrCH 2-; R'= CH3-(13); R = H 2 C = C(CH 3)-,R′= C 2 H 5-(14)。从仅催化量的bmimCl(1-丁基-3-甲基咪唑鎓氯化物)的反应中获得最好的结果,在许多情况下,反应时间少于20分钟。这些反应的实验数据,B10H13-盐与炔烃反应的结果以及该系列第三篇论文中报道的计算研究均支持以下反应序列:(1)最初的离子液体促进了B10H13的形成-阴离子,(2)将B10H13-加至炔烃以形成arachno-R,R'-C2B10H13-阴离子,和(3)质子交换作用Arachno-R,R'-C2B10H13-形成最终的中性1-R -2-R'-1,2-C2B10H10产物,但有氢气损失。

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