Park Mi Joo, Lee Jimin, Suh Yumi, Kim Jinheung, Nam Wonwoo
Department of Chemistry, Ewha Womans University, Seoul, Korea.
J Am Chem Soc. 2006 Mar 1;128(8):2630-4. doi: 10.1021/ja055709q.
There is an intriguing, current controversy on the involvement of iron(III)-hydroperoxo species as a "second electrophilic oxidant" in oxygenation reactions by heme and non-heme iron enzymes and their model compounds. In the present work, we have performed reactivity studies of the iron-hydroperoxo species in nucleophilic and electrophilic reactions, with in situ-generated mononuclear non-heme iron(III)-hydroperoxo complexes that have been well characterized with various spectroscopic techniques. The intermediates did not show any reactivities in the nucleophilic (e.g., aldehyde deformylation) and electrophilic (e.g., oxidation of sulfide and olefin) reactions. These results demonstrate that non-heme iron(III)-hydroperoxo species are sluggish oxidants and that the oxidizing power of the intermediates cannot compete with that of high-valent iron(IV)-oxo complexes. We have also reported reactivities of mononuclear non-heme iron(III)-peroxo and iron(IV)-oxo complexes in the aldehyde deformylation and the oxidation of sulfides, respectively.
关于铁(III)-氢过氧物种作为“第二亲电氧化剂”参与血红素和非血红素铁酶及其模型化合物的氧化反应,目前存在一场引人关注的争议。在本工作中,我们利用各种光谱技术对原位生成的单核非血红素铁(III)-氢过氧配合物进行了充分表征,并对铁-氢过氧物种在亲核反应和亲电反应中的反应活性进行了研究。这些中间体在亲核反应(如醛脱甲酰基反应)和亲电反应(如硫化物和烯烃的氧化反应)中均未表现出任何反应活性。这些结果表明,非血红素铁(III)-氢过氧物种是惰性氧化剂,且这些中间体的氧化能力无法与高价铁(IV)-氧配合物相竞争。我们还分别报道了单核非血红素铁(III)-过氧配合物和铁(IV)-氧配合物在醛脱甲酰基反应和硫化物氧化反应中的反应活性。