Department of Chemistry, University of South Florida, Tampa, Florida 33620-5250, USA.
J Am Chem Soc. 2011 Jun 8;133(22):8518-21. doi: 10.1021/ja203434c. Epub 2011 May 17.
New and conclusive evidence has been obtained for the existence of cobalt(III)-carbene radicals that have been previously proposed as the key intermediates in the underlying mechanism of metalloradical cyclopropanation by cobalt(II) complexes of porphyrins. In the absence of olefin substrates, reaction of [Co(TPP)] with ethyl styryldiazoacetate was found to generate the corresponding cobalt(III)-vinylcarbene radical that subsequently dimerizes via its γ-radical allylic resonance form to afford a dinuclear cobalt(III) porphyrin complex. X-ray structural analysis reveals a highly compact dimeric structure wherein the two metalloporphyrin units are arranged in a face-to-face fashion through a tetrasubstituted 1,5-hexadiene C(6)-bridge between the two Co(III) centers. The γ-radical allylic resonance form of the cobalt(III)-vinylcarbene radical intermediate could be effectively trapped by TEMPO via C-O bond formation to give a mononuclear cobalt(III) complex instead of the dimeric product. The allylic radical nature and related reactivity profile of the cobalt(III)-carbene radical, including its inability to abstract hydrogen atoms from toluene solvent, were established by DFT calculations.
新的、确凿的证据表明,钴(III)-卡宾自由基的存在以前被提出作为金属自由基环丙烷化的潜在机制中的关键中间体,这是由卟啉的钴(II)配合物所提出的。在没有烯烃底物的情况下,发现[Co(TPP)]与乙基苯乙烯重氮乙酸酯反应生成相应的钴(III)-乙烯基卡宾自由基,随后通过其γ-自由基烯丙基共振形式二聚化,得到双核钴(III)卟啉配合物。X 射线结构分析揭示了一种高度紧凑的二聚体结构,其中两个金属卟啉单元通过两个 Co(III)中心之间的四取代 1,5-己二烯 C(6)-桥以面对面的方式排列。钴(III)-乙烯基卡宾自由基中间体的γ-自由基烯丙基共振形式可以通过 C-O 键形成有效地被 TEMPO 捕获,从而得到单核钴(III)配合物而不是二聚产物。通过 DFT 计算,确定了钴(III)-卡宾自由基的烯丙基自由基性质和相关反应性特征,包括其不能从甲苯溶剂中提取氢原子。