Ahn Hye Mi, Bae Jeong Mi, Kim Min Jeong, Bok Kwon Hee, Jeong Ha Young, Lee Suk Joong, Kim Cheal
Department of Fine Chemistry, Seoul National University of Science and Technology, Seoul, 139-743, Korea.
Department of Chemistry, Korea University, Seoul, 136-701, Korea.
Chemistry. 2017 Sep 4;23(49):11969-11976. doi: 10.1002/chem.201702750. Epub 2017 Aug 9.
A new nickel(II) porphyrin complex, [Ni (porp)] (1), has been synthesized and characterized by H NMR, C NMR and mass spectrometry analysis. This Ni porphyrin complex 1 quantitatively catalyzed the epoxidation reaction of a wide range of olefins with meta-chloroperoxybenzoic acid (m-CPBA) under mild conditions. Reactivity and Hammett studies, H O-exchange experiments, and the use of PPAA (peroxyphenylacetic acid) as a mechanistic probe suggested that participation of multiple active oxidants Ni -OOC(O)R 2, Ni -Oxo 3, and Ni -Oxo 4 within olefin epoxidation reactions by the nickel porphyrin complex is markedly affected by solvent polarity, concentration, and type of substrate. In aprotic solvent systems, such as toluene, CH Cl , and CH CN, multiple oxidants, Ni -(O)R 2, Ni -Oxo 3, and Ni -Oxo 4, operate simultaneously as the key active intermediates responsible for epoxidation reactions of easy-to-oxidize substrate cyclohexene, whereas Ni -Oxo 3 and Ni -Oxo 4 species become the common reactive oxidant for the difficult-to-oxidize substrate 1-octene. In a protic solvent system, a mixture of CH CN and H O (95:5), the Ni -OOC(O)R 2 undergoes heterolytic or homolytic O-O bond cleavage to afford Ni -Oxo 3 and Ni -Oxo 4 species by general acid catalysis prior to direct interaction between 2 and olefin, regardless of the type of substrate. In this case, only Ni -Oxo 3 and Ni -Oxo 4 species were the common reactive oxidant responsible for olefin epoxidation reactions.
一种新型镍(II)卟啉配合物[Ni(porp)](1)已被合成,并通过1H NMR、13C NMR和质谱分析进行了表征。这种镍卟啉配合物1在温和条件下能定量催化多种烯烃与间氯过氧苯甲酸(m-CPBA)的环氧化反应。反应活性和哈米特研究、H2O交换实验以及使用过氧苯乙酸(PPAA)作为机理探针表明,镍卟啉配合物在烯烃环氧化反应中多种活性氧化剂Ni -OOC(O)R2、Ni -Oxo3和Ni -Oxo4的参与明显受到溶剂极性、浓度和底物类型的影响。在非质子溶剂体系中,如甲苯、CH2Cl2和CH3CN,多种氧化剂Ni -(O)R2、Ni -Oxo3和Ni -Oxo4同时作为关键活性中间体,负责易氧化底物环己烯的环氧化反应,而Ni -Oxo3和Ni -Oxo4物种则成为难氧化底物1-辛烯的常见反应性氧化剂。在质子溶剂体系CH3CN和H2O(95:5)的混合物中,Ni -OOC(O)R2在与烯烃直接相互作用之前,通过一般酸催化发生异裂或均裂O-O键断裂,生成Ni -Oxo3和Ni -Oxo4物种,无论底物类型如何。在这种情况下,只有Ni -Oxo3和Ni -Oxo4物种是负责烯烃环氧化反应的常见反应性氧化剂。