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氰基稳定的格氏试剂的立体化学反转:醚溶剂结构和浓度的显著影响。

Stereochemical inversion of a cyano-stabilized grignard reagent: remarkable effects of the ethereal solvent structure and concentration.

机构信息

Department of Chemistry, Virginia Tech , Blacksburg, Virginia 24061, United States.

出版信息

J Am Chem Soc. 2013 Sep 25;135(38):14390-400. doi: 10.1021/ja407348s. Epub 2013 Sep 13.

DOI:10.1021/ja407348s
PMID:23978216
Abstract

Chiral organometallic reagents are useful in asymmetric synthesis, and configurational stability of these species is critical to success. In this study we followed the epimerization of a chiral Grignard reagent, prepared by Mg/Br exchange of bromonitrile trans-2b. This compound underwent highly retentive Mg/Br exchange in Et2O; less retention was observed in 2-MeTHF and THF. Epimerization rate constants k(tc) were determined at 195 K by measuring the diastereomer ratio of deuteration product d1-3b as a function of the delay time before quench. Studies were also performed at varying concentrations of Et2O in toluene. Remarkable dynamic range in k(tc) was seen: relative to reaction at 0.12 M Et2O in toluene, epimerization was 26-, 800-, and 1300-fold faster in Et2O, 2-MeTHF, and THF, respectively. Thus, the identity and concentration of an ethereal solvent can dramatically affect configurational stability. Reaction stoichiometry experiments suggested that, in Et2O, the Grignard reagent derived from trans-2b exists as an i-PrMgCl heterodimer; the invariance of k(tc) over a 20-fold range in [Mg]total ruled out mandatory deaggregation (or aggregation) on the epimerization path. Analysis of the dependency of k(tc) on [Et2O] and temperature in Et2O/toluene solution at 195, 212, and 231 K indicated fast incremental solvation before rate-limiting ion-pair separation and provided an estimate of the entropic cost of capturing a solvent ligand (-13 ± 3 eu). Calculations at the MP2/6-31G*(PCM)//B3LYP/6-31G* level provide support for these conclusions and map out a possible "ionogenic conducted tour" pathway for epimerization.

摘要

手性有机金属试剂在不对称合成中很有用,这些物种的构型稳定性对于成功至关重要。在这项研究中,我们跟踪了通过 Mg/Br 交换制备的手性格氏试剂 trans-2b 的外消旋化。该化合物在 Et2O 中进行了高度保留的 Mg/Br 交换;在 2-MeTHF 和 THF 中观察到的保留性较小。通过测量氘化产物 d1-3b 的非对映异构体比作为猝灭前延迟时间的函数,在 195 K 下确定外消旋化速率常数 k(tc)。还在甲苯中不同浓度的 Et2O 下进行了研究。在 k(tc) 中观察到显著的动态范围:与在甲苯中 0.12 M Et2O 下的反应相比,外消旋化在 Et2O、2-MeTHF 和 THF 中的速率分别快 26、800 和 1300 倍。因此,醚溶剂的性质和浓度可以极大地影响构型稳定性。反应计量学实验表明,在 Et2O 中,由 trans-2b 衍生的格氏试剂以异-PrMgCl 杂二聚体的形式存在;k(tc) 在 [Mg]total 20 倍范围内不变排除了在外消旋化路径上必需的解聚(或聚合)。在 195、212 和 231 K 下在 Et2O/甲苯溶液中分析 k(tc) 对 [Et2O]和温度的依赖性表明在限速离子对分离之前快速递增的溶剂化,并提供了捕获溶剂配体的熵成本的估计值(-13 ± 3 eu)。在 MP2/6-31G*(PCM)//B3LYP/6-31G* 水平上的计算为这些结论提供了支持,并描绘了外消旋化的可能“离子导 touring”途径。

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