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扩环烯烃复分解反应:一种用于环氧化合物水解动力学拆分的高活性不对称大环低聚共双水杨醛催化剂的合成途径。

Ring-expanding olefin metathesis: a route to highly active unsymmetrical macrocyclic oligomeric co-salen catalysts for the hydrolytic kinetic resolution of epoxides.

作者信息

Zheng Xiaolai, Jones Christopher W, Weck Marcus

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.

出版信息

J Am Chem Soc. 2007 Feb 7;129(5):1105-12. doi: 10.1021/ja0641406.

Abstract

In the presence of the third generation Grubbs catalyst, the ring-expanding olefin metathesis of a monocyclooct-4-en-1-yl functionalized salen ligand and the corresponding Co(II)(salen) complex at low monomer concentrations results in the exclusive formation of macrocyclic oligomeric structures with the salen moieties being attached in an unsymmetrical, flexible, pendent manner. The TOF-MALDI mass spectrometry reveals that the resulting macrocyclic oligomers consist predominantly of dimeric to tetrameric species, with detectable traces of higher homologues up to a decamer. Upon activation under aerobic and acidic conditions, these Co(salen) macrocycles exhibit extremely high reactivities and selectivities in the hydrolytic kinetic resolution (HKR) of a variety of racemic terminal epoxides under neat conditions with very low catalyst loadings. The excellent catalytic properties can be explained in terms of the new catalyst's appealing structural features, namely, the flexible oligomer backbone, the unsymmetrical pendent immobilization motif of the catalytic sites, and the high local concentration of Co(salen) species resulting from the macrocyclic framework. This ring-expanding olefin metathesis is suggested to be a simple way to prepare tethered metal complexes that are endowed with key features--(i) a high local concentration of metal complexes and (ii) a flexible, single point of attachment to the support--that facilitate rapid and efficient catalysis when a bimetallic transition state is required.

摘要

在第三代格拉布催化剂存在下,单环辛 - 4 - 烯 - 1 - 基官能化的双水杨醛缩乙二胺配体与相应的Co(II)(salen)配合物在低单体浓度下进行扩环烯烃复分解反应,专一性地生成大环低聚结构,其中双水杨醛缩乙二胺部分以不对称、灵活的悬垂方式连接。飞行时间基质辅助激光解吸电离质谱显示,所得大环低聚物主要由二聚体到四聚体组成,可检测到痕量的直至十聚体的更高同系物。在有氧和酸性条件下活化后,这些Co(salen)大环在纯溶剂条件下以非常低的催化剂负载量对多种外消旋末端环氧化物的水解动力学拆分(HKR)中表现出极高的反应活性和选择性。优异的催化性能可以从新催化剂吸引人的结构特征来解释,即柔性低聚物主链、催化位点的不对称悬垂固定模式以及大环框架导致的Co(salen)物种的高局部浓度。这种扩环烯烃复分解反应被认为是制备具有关键特征的 tethered 金属配合物的一种简单方法,这些关键特征包括:(i)金属配合物的高局部浓度和(ii)与载体的柔性单点连接,当需要双金属过渡态时,这有助于快速高效的催化。

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