Malik Hasnain A, Taylor Buck L H, Kerrigan John R, Grob Jonathan E, Houk K N, Du Bois J, Hamann Lawrence G, Patterson Andrew W
Global Discovery Chemistry, Novartis Institutes for BioMedical Research, Inc., Cambridge, Massachusetts 02139.
Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095.
Chem Sci. 2014 Jun 1;5(6):2352-2361. doi: 10.1039/C3SC53414F.
We outline a strategy to enable non-directed Pd(II)-catalyzed C-H functionalization in the presence of Lewis basic heterocycles. In a high-throughput screen of two Pd-catalyzed C-H acetoxylation reactions, addition of a variety of -containing heterocycles is found to cause low product conversion. A pyridine-containing test substrate is selected as representative of heterocyclic scaffolds that are hypothesized to cause catalyst arrest. We pursue two approaches in parallel that allow product conversion in this representative system: Lewis acids are found to be effective blocking groups for the Lewis basic site, and a pre-formed pyridine -oxide is shown to enable high yield of allylic C-H acetoxylation. Computational studies with density functional theory (M06) of binding affinities of selected heterocycles to Pd(OAc) provide an inverse correlation of the computed heterocycle-Pd(OAc) binding affinities with the experimental conversions to products. Additionally, H NMR binding studies provide experimental support for theoretical calculations.
我们概述了一种在路易斯碱性杂环存在下实现非定向钯(II)催化的C-H官能化的策略。在两个钯催化的C-H乙酰氧基化反应的高通量筛选中,发现添加各种含杂环会导致产物转化率较低。选择一种含吡啶的测试底物作为杂环支架的代表,据推测该杂环支架会导致催化剂失活。我们并行采用两种方法,使该代表性体系中的产物能够转化:发现路易斯酸是路易斯碱性位点的有效阻断基团,并且预先形成的吡啶氧化物能够实现烯丙基C-H乙酰氧基化的高产率。使用密度泛函理论(M06)对选定杂环与Pd(OAc)的结合亲和力进行的计算研究表明,计算得到的杂环-Pd(OAc)结合亲和力与产物的实验转化率呈负相关。此外,1H NMR结合研究为理论计算提供了实验支持。