WestCHEM, Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow, G1 1XL, UK.
Chemistry. 2011 Jul 18;17(30):8333-41. doi: 10.1002/chem.201100866. Epub 2011 Jun 7.
Numerous organic transformations rely on organozinc compounds made through salt-metathesis (exchange) reactions from organolithium or Grignard reagents with a suitable zinc precursor. By combining X-ray crystallography, NMR spectroscopy and DFT calculations, this study sheds new light on the constitution of the organometallic species involved in this important synthetic tool. Investigations into the metathesis reactions of equimolar amounts of Grignard reagents (RMgX) and ZnCl(2) in THF led to the isolation of novel magnesium-zinc hybrids, [{(thf)(2)Mg(μ-Cl)(3)ZnR}(2)] (R=Et, tBu, nBu or o-OMe-C(6)H(4)), which exhibit an unprecedented structural motif in mixed magnesium-zinc chemistry. Furthermore, theoretical modelling of the reaction of EtMgCl with ZnCl(2) reveals that formation of the mixed-metal compound is thermodynamically preferred to that of the expected homometallic products, RZnCl and MgCl(2). This study also assesses the alkylating ability of hybrid 3 towards the sensitive ketone trifluoroacetophenone, revealing a dramatic increase in the chemoselectivity of the reaction when LiCl is introduced as an additive. This observation, combined with recent related breakthroughs in synthesis, points towards the existence of a trilateral Li/Mg/Zn synergistic effect.
许多有机转化依赖于通过盐-转移(交换)反应从有机锂或格氏试剂与合适的锌前体制备的有机锌化合物。通过结合 X 射线晶体学、NMR 光谱和 DFT 计算,这项研究为涉及这一重要合成工具的有机金属物种的构成提供了新的认识。对等摩尔量的格氏试剂(RMgX)和 ZnCl2 在 THF 中的转移反应的研究导致了新型镁-锌杂化物 [{(thf)2Mg(μ-Cl)(3)ZnR}(2)](R=Et、tBu、nBu 或 o-OMe-C6H4)的分离,其在混合镁-锌化学中表现出前所未有的结构模式。此外,对 EtMgCl 与 ZnCl2 的反应的理论建模表明,形成混合金属化合物在热力学上优先于预期的同核产物 RZnCl 和 MgCl2。这项研究还评估了杂化物 3 对敏感酮三氟乙酰基苯甲酮的烷基化能力,发现当引入作为添加剂的 LiCl 时,反应的化学选择性显著增加。这一观察结果,结合最近在合成方面的相关突破,表明存在三方 Li/Mg/Zn 协同效应。