Johnson Samuel A, Huff Carla W, Mustafa Ferheen, Saliba Mark
Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, Canada N9B 3P4.
J Am Chem Soc. 2008 Dec 24;130(51):17278-80. doi: 10.1021/ja8081395.
The reaction of (PEt(3))(2)Ni(eta(2)-C(14)H(10)), a source of the reactive Ni(PEt(3))(2) moiety, with 1,2,4,5-F(4)C(6)H(2) yields a mixture of three C-F bond activation products that include the unexpected products (PEt(3))(2)NiF-2,3,5,6-F(4)C(6)H and (PEt(3))(2)NiF-2,3,5-F(3)C(6)H(2). Monitoring the reaction mixture via (19)F and (1)H NMR also reveals the presence of the C-H bond activation product, (PEt(3))(2)NiH-2,3,5,6-F(4)C(6)H which is produced in a rapid equilibrium reaction. This observation provides insight into the steps necessary to modify nickel complexes for selective C-F bond activation in a variety of polyfluorinated aromatic substrates, but also expands the potential of simple nickel compounds for C-H bond activation and functionalization reactions.
(PEt(3))(2)Ni(η(2)-C(14)H(10)),即活性Ni(PEt(3))(2)部分的来源,与1,2,4,5-F(4)C(6)H(2)反应,生成了三种C-F键活化产物的混合物,其中包括意外产物(PEt(3))(2)NiF-2,3,5,6-F(4)C(6)H和(PEt(3))(2)NiF-2,3,5-F(3)C(6)H(2)。通过(19)F和(1)H NMR监测反应混合物还揭示了C-H键活化产物(PEt(3))(2)NiH-2,3,5,6-F(4)C(6)H的存在,它是在快速平衡反应中产生的。这一观察结果不仅深入了解了在各种多氟芳烃底物中修饰镍配合物以实现选择性C-F键活化所需的步骤,还扩展了简单镍化合物在C-H键活化和官能化反应中的潜力。