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过酸氧化未活化 sp~C-H 键:一种重要的溶剂效应。

Peracid Oxidation of Unactivated sp C-H Bonds: An Important Solvent Effect.

机构信息

Department Pure and Applied Chemistry Thomas Graham Building, University of Strathclyde, Glasgow, G1 1XL, UK.

GlaxoSmithKline R&D, Gunnels Wood Road, Stevenage, SG1 2NY, UK.

出版信息

Chemistry. 2023 Jun 2;29(31):e202204007. doi: 10.1002/chem.202204007. Epub 2023 Apr 24.

Abstract

The peracid oxidation of hydrocarbons in chlorinated solvents is a low yielding and poorly selective process. Through a combination of DFT calculations, spectroscopic studies, and kinetic measurement it is shown that the origin of this is electronic in nature and can be influenced through the addition of hydrogen bond donors (HBD) and hydrogen bond acceptors (HBA). Performing the reaction of a cycloalkane with mCPBA in a fluorinated alcohol solvent such as nonafluoro-tert-butanol (NFTB) or hexafluoroisopropanol (HFIP), which act as strong HBD and poor HBA, leads to significantly higher yields and selectivities being observed for the alcohol product. Application of the optimised reaction conditions allows for the selective oxidation of both cyclic and linear alkane substrates delivering the corresponding alcohol in up to 86 % yield. The transformation shows selectivity for tertiary centres over secondary centres and the oxidation of secondary centres is strongly influenced by stereoelectronic effects. Primary centres are not oxidised by this method. A simple computational model developed to understand this transformation provides a powerful tool to reliably predict the influence of substitution and functionality on reaction outcome.

摘要

在氯化溶剂中,过酸氧化烃类是一种产率低且选择性差的过程。通过密度泛函理论(DFT)计算、光谱研究和动力学测量的结合,表明其本质上是电子的,并且可以通过添加氢键供体(HBD)和氢键受体(HBA)来影响。在氟化醇溶剂(如全氟叔丁醇(NFTB)或六氟异丙醇(HFIP))中进行环烷烃与间氯过氧苯甲酸(mCPBA)的反应,这些溶剂既是强 HBD,又是差的 HBA,导致观察到醇产物的产率和选择性显著提高。应用优化的反应条件可以选择性地氧化环状和线性烷烃底物,以高达 86%的收率得到相应的醇。该转化对叔碳原子具有选择性,而对仲碳原子的氧化受到立体电子效应的强烈影响。该方法不能氧化伯碳原子。为了理解这种转化而开发的简单计算模型提供了一个强大的工具,可以可靠地预测取代基和官能团对反应结果的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ecc/10946557/c9a4c78388dd/CHEM-29-0-g009.jpg

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