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Mn(III)-lodosylarene Porphyrins as an Active Oxidant in Oxidation Reactions: Synthesis, Characterization, and Reactivity Studies

  • 주제(기타) Chemistry, Inorganic & Nuclear
  • 설명문(일반) [Guo, Mian; Lee, Yong-Min; Seo, Mi Sook; Kwon, Yong-Ju; Li, Xiao-Xi; Kim, Won-Suk; Fukuzumi, Shunichi; Nam, Wonwoo] Ewha Womans Univ, Dept Chem & Nano Sci, Seoul 03760, South Korea; [Ohta, Takehiro] Univ Hyogo, Grad Sch Life Sci, Picobiol Inst, RSC UH LP Ctr, Sayo, Hyogo 6795148, Japan; [Sarangi, Ritimukta] SLAC Natl Accelerator Lab, Stanford Synchrotron Radiat Lightsource, Menlo Pk, CA 94025 USA; [Nam, Wonwoo] Shaanxi Normal Univ, Sch Chem & Chem Engn, Xian 710119, Shaanxi, Peoples R China
  • 등재 SCIE, SCOPUS
  • 발행기관 AMER CHEMICAL SOC
  • 발행년도 2018
  • URI http://www.dcollection.net/handler/ewha/000000155661
  • 본문언어 영어
  • Published As http://dx.doi.org/10.1021/acs.inorgchem.8b01426

초록/요약

Mn(III)-iodosylarene porphyrin adducts, [Mn(III)(ArIO)(Porp)r, were synthesized by reacting electron-deficient Mn(III) porphyrin complexes with iodosylarene (ArIO) at-60 degrees C and characterized using various spectroscopic methods. The [Mn(III)(ArIO)(Porp)](+) species were then investigated in the epoxidation of olefins under stoichiometric conditions. In the epoxidation of olefins by the Mn(III)-iodosylarene porphyrin species, epoxide was formed as the sole product with high chemoselectivities and stereoselectivities. For example, cyclohexene oxide was formed exclusively with trace amounts of allylic oxidation products; cis- and trans-stilbenes were oxidized to the corresponding cis- and trans-stilbene oxides, respectively. In the catalytic epoxidation of cyclohexene by an electron-deficient Mn(M) porphyrin complex and sPhIO at low temperature (e.g.,-60 degrees C), the Mn(III)-iodosylarene porphyrin species was evidenced as the active oxidant that effects the olefin epoxidation to give epoxide as the product. However, at high temperature (e.g., 0 degrees C) or in the case of using an electron-rich manganese(III) porphyrin catalyst, allylic oxidation products, along with cyclohexene oxide, were yielded, indicating that the active oxidant(s) was not the Mn(III)-iodosylarene adduct but probably high-valent Mn-oxo species in the catalytic reactions. We also report the conversion of the Mn(III)-iodosylarene porphyrins to high-valent Mn-oxo porphyrins under various conditions, such as at high temperature, with electron-rich porphyrin ligand, and in the presence of base (01-1-). The present study reports the first example of spectroscopically well-characterized Mn(III)-iodosylarene porphyrin species being an active oxidant in the stoichiometric and catalytic oxidation reactions. Other aspects, such as one oxidant versus multiple oxidants debate, also were discussed.

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