Structure–activity relationship of alkanes and alkane derivatives for the abilities of C(sp3)H bonds toward their H‐atom transfer reactions

Author:

Fu Yan‐Hua1ORCID,Yang Liguo1,Zhou Zhongyuan1,Wang Fang1,Shen Guang‐Bin2,Zhu Xiao‐Qing3

Affiliation:

1. College of Chemistry and Environmental Engineering Anyang Institute of Technology Anyang China

2. School of Medical Engineering Jining Medical University Jining China

3. The State Key Laboratory of Elemento‐Organic Chemistry, College of Chemistry Nankai University Tianjin China

Abstract

AbstractHydrogen atom‐donating ability of alkane is a research hotspot and has been extensively studied. In this article, the second‐order rate constants of 20 hydrogen atom transfer (HAT) reactions between aliphatic, benzylic, and allylic alkanes and alkane derivatives with CumO in acetonitrile at 298 K were studied. The thermo‐kinetic parameter ΔG≠o(XH), bond dissociation free energy ΔGo(XH), and kinetic intrinsic resistance energy ΔGXH/X were determined and used to evaluate the H‐donating abilities of these substrates in thermodynamics, kinetics, and HAT reactions. Structure–activity relationships including the factors (electronic, stereoelectronic, and steric effects), introduction of CH3, Ph, or Cl in alkanes, and introduction of N atom in cycloalkane were discussed carefully. The results show that the order of H‐donating abilities is allylic alkanes > cycloalkanes > chain alkanes ≈ benzylic alkanes > haloalkanes. The introduction of CH3, Ph, or Cl in alkanes and the introduction of N atom to the carbon ring reduce ΔGo(XH) but increase ΔGXH/X, and ΔG≠o(XH) is the synthesis result of these two parameters. The reliability of ΔG≠o(XH) was verified, and the accuracy and reliability of the parameters were proved. Through the study of this paper, not only the ΔGo(XH), ΔGXH/X, and ΔG≠o(XH) of these alkanes and derivatives in HAT reaction can be quantitatively evaluated but also the structure–activity relationship of alkane is clearly researched.

Publisher

Wiley

Subject

Organic Chemistry,Physical and Theoretical Chemistry

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