Jiménez M Victoria, Fernández-Tornos Javier, Modrego F Javier, Pérez-Torrente Jesús J, Oro Luis A
Departamento de Química Inorgánica, Instituto de Síntesis Química y Catálisis Homogénea-ISQCH, Universidad de Zaragoza-CSIC, C/Pedro Cerbuna, 50009-Zaragoza (Spain).
Chemistry. 2015 Dec 1;21(49):17877-89. doi: 10.1002/chem.201502910. Epub 2015 Oct 23.
The borrowing hydrogen methodology allows for the use of alcohols as alkylating agents for CC bond forming processes offering significant environmental benefits over traditional approaches. Iridium(I)-cyclooctadiene complexes having a NHC ligand with a O- or N-functionalised wingtip efficiently catalysed the oxidation and β-alkylation of secondary alcohols with primary alcohols in the presence of a base. The cationic complex [Ir(NCCH3 )(cod)(MeIm(2- methoxybenzyl))][BF4 ] (cod=1,5-cyclooctadiene, MeIm=1-methylimidazolyl) having a rigid O-functionalised wingtip, shows the best catalyst performance in the dehydrogenation of benzyl alcohol in acetone, with an initial turnover frequency (TOF0 ) of 1283 h(-1) , and also in the β-alkylation of 2-propanol with butan-1-ol, which gives a conversion of 94 % in 10 h with a selectivity of 99 % for heptan-2-ol. We have investigated the full reaction mechanism including the dehydrogenation, the cross-aldol condensation and the hydrogenation step by DFT calculations. Interestingly, these studies revealed the participation of the iridium catalyst in the key step leading to the formation of the new CC bond that involves the reaction of an O-bound enolate generated in the basic medium with the electrophilic aldehyde.
借氢方法允许使用醇作为用于形成CC键过程的烷基化剂,与传统方法相比具有显著的环境效益。具有O-或N-官能化翼尖的NHC配体的铱(I)-环辛二烯配合物在碱存在下有效地催化了仲醇与伯醇的氧化和β-烷基化反应。具有刚性O-官能化翼尖的阳离子配合物[Ir(NCCH3 )(cod)(MeIm(2-甲氧基苄基))][BF4 ](cod = 1,5-环辛二烯,MeIm = 1-甲基咪唑基)在丙酮中苯甲醇的脱氢反应中表现出最佳的催化性能,初始周转频率(TOF0 )为1283 h(-1) ,在2-丙醇与丁-1-醇的β-烷基化反应中也是如此,该反应在10小时内转化率为94 %,对2-庚醇的选择性为99 %。我们通过密度泛函理论计算研究了包括脱氢、交叉羟醛缩合和氢化步骤在内的完整反应机理。有趣的是,这些研究揭示了铱催化剂参与导致形成新的CC键的关键步骤,该步骤涉及碱性介质中生成的O-键合烯醇盐与亲电醛的反应。