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由甲基三联吡啶-Ni(I)配合物催化的Negishi烷基-烷基交叉偶联反应的密度泛函理论研究

Density functional theory studies of negishi alkyl-alkyl cross-coupling reactions catalyzed by a methylterpyridyl-Ni(I) complex.

作者信息

Lin Xufeng, Phillips David Lee

机构信息

Department of Chemistry, The University of Hong Kong, Hong Kong, PR China.

出版信息

J Org Chem. 2008 May 16;73(10):3680-8. doi: 10.1021/jo702497p. Epub 2008 Apr 15.

Abstract

Density functional theory calculations were done to examine the potential energy surfaces of Ni(I)-catalyzed Negishi alkyl-alkyl cross-coupling reactions by using propyl iodide and isopropyl iodide as model alkyl electrophiles and CH 3ZnI as a model alkyl nucleophile. A four-step catalytic cycle involving iodine transfer, radical addition, reductive elimination, and transmetalation steps were characterized structurally and energetically. The reaction mechanism for this catalytic cycle appears feasible based on the calculated free energy profiles for the reactions. The iodine transfer step is the rate-determining step for the Ni(tpy)-CH 3 (tpy = 2,2'6',2''-terpyridine) reactions with alkyl iodides. For secondary alkyl electrophiles, the oxidative addition intermediate, Ni(III), prefers to undergo decomposition over reductive elimination, whereas for the primary alkyl electrophiles, Ni(III) prefers to undergo reductive elimination over decomposition based on comparison of the relative reaction rates for these two types of steps. In addition, thermodynamic data were employed to help explain why the yield of the coupled product is very low from the Ni(II)-alkyl halide reactions with organozinc reagents.

摘要

通过使用碘化丙基和碘化异丙基作为模型烷基亲电试剂以及CH₃ZnI作为模型烷基亲核试剂,进行了密度泛函理论计算,以研究Ni(I)催化的Negishi烷基-烷基交叉偶联反应的势能面。对包括碘转移、自由基加成、还原消除和转金属化步骤的四步催化循环进行了结构和能量表征。基于计算出的反应自由能曲线,该催化循环的反应机理似乎是可行的。碘转移步骤是Ni(tpy)-CH₃(tpy = 2,2'6',2''-三联吡啶)与烷基碘反应的速率决定步骤。对于仲烷基亲电试剂,氧化加成中间体Ni(III)相比于还原消除更倾向于分解,而对于伯烷基亲电试剂,基于这两种步骤相对反应速率的比较,Ni(III)相比于分解更倾向于进行还原消除。此外,利用热力学数据来帮助解释为什么Ni(II)-卤代烷与有机锌试剂反应的偶联产物产率非常低。

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