Personnel Information

写真b

OKAZAKI MASAAKI


Title

Professor

Degree 【 display / non-display

  • Doctor (Science)

 

Papers 【 display / non-display

  • English, Synthesis, Structures, and Reactions of Dirhodium Complexes Bearing 1,2-Diphenyl-3,4-diphosphinidenecyclobutene Ligand (DPCB), Organometallics, vol.28 (p.902 - 908) , 2009.02, Masaaki Okazaki, Akito Hayashi, Ching-Feng Fu, Shiuh-Tzung Liu, and Fumiyuki Ozawa

    Research paper (scientific journal), Joint Work

  • English, Redox-responsive Recombination of Carbon–Carbon Bonds on Flexible Tetrairon Cores, J. Am. Chem. Soc., vol.131 (p.1684 - 1685) , 2009.02, Masaaki Okazaki, Masato Takano, Fumiyuki Ozawa

    Research paper (scientific journal), Joint Work

  • English, Synthesis and Characterization of DMAP-Stabilized Aryl(silylene) Complexes and (Arylsilyl)(DMAP) Complexes of Tungsten: Mechanistic Study on the Interconversion between These Complexes via 1,2-Aryl Migration, Organometallics, vol.28 (p.1791 - 1799) , 2009.03, Eiji Suzuki, Takashi Komuro, Masaaki Okazaki, Hiromi Tobita

    Research paper (scientific journal), Joint Work

  • English, Redox-Active Phosphorus Ligands Bearing a [4Fe–4C] Core Substituent, Organometallics, vol.28 (p.7055 - 7058) , 2009.12, Masaaki Okazaki, Ken-ichi Yoshimura, Masato Takano, Fumiyuki Ozawa

    Research paper (scientific journal), Joint Work

  • English, Synthesis and Characterization of κ2C,N-N-Silyliminoacyl Tungsten Complexes Cp*(CO)2W{κ2C,N-C(R)═NSiR'3} [R = Me, Et, i-Pr, t-Bu; R'3 = (p-Tol)2Me, (p-Tol)3, Et3; Cp* = η5-C5Me5]: Thermally Induced Carbon−Carbon Bond Cleavage of Their Iminoacyl Ligands, Organometallics, vol.29 (p.1839 - 1848) , 2010.04, Eiji Suzuki, Takashi Komuro, Yuto Kanno, Masaaki Okazaki, Hiromi Tobita

    Research paper (scientific journal), Joint Work

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Review Papers 【 display / non-display

  • English, Oxidative addition of Boron-Fluorine Bonds toward Transition Metals, 近畿化学協会, Organomtallic NEWS, vol.1 (p.27) , 2012.03, Masaaki Okazaki

    Introduction and explanation (others), Single Work