大阪大学 · 生化学・遺伝学・分子生物学
Kizashi Yamaguchi教授の研究室は、分子磁性や電子相関を扱う理論的・計算化学的手法を基盤とし、遷移金属酸化物におけるスピン相互作用や高Tc超伝導の起源、光合成系の酸素発生中心の構造・電子状態の解明を主な研究テーマとしています。特に、ハーバードモデルやDFTを用いた有機・無機ハイブリッド系の磁気的性質の理論的解析が特色です。また、反応機構の理解を深めるために、分子集団の多スピン状態や電子分布の解析にも力を入れています。
Figures are computed from collected data and may differ slightly.
The superexchange interaction between transition-metal ions via oxygen dianion was investigated by the ab initio molecular orbital (MO) method. It is found that the magnitude of the effective exchange integral ( J ab ) for the CuOCu unit is far larger than those of the NiONi, CrOCr and FeOFe units. Implications of this result are discussed in relation to the high T c superconductivity for Ba-La-Cu-O and R-Ba-Cu-O (R=Y, etc.).
Abstract A generalized molecular orbital (GMO) theory for magnetically interacting organic compounds has been presented. The theory is applied to the calculations of the effective exchange integrals (Jab) for the cyclophane-type carbene dimers whose para and ortho-isomers have the high-spin ground state. The calculated Jab-values are consistent with observations.
Full geometry optimizations of several inorganic model clusters, CaMn(4)O(4)XYZ(H(2)O)(2) (X, Y, Z = H(2)O, OH(-) or O(2-)), by the use of the B3LYP hybrid density functional theory (DFT) have been performed to illuminate plausible molecular structures of the catalytic site for water oxidation in the S(0), S(1), S(2) and S(3) states of the Kok cycle for the oxygen-evolving complex (OEC) of photosystem II (PSII). Optimized geometries obtained by the energy gradient method have revealed the degree
Abstract Analytical expressions of total energies, effective exchange integrals, polyradical character, spin density, unpaired electron density, and information entropy are derived for allyl radical dimers and trimers on the basis of the Hubbard model in order to elucidate interrelationships among several broken‐symmetry and symmetry‐adapted approaches to molecular magnetism. Ab initio unrestricted Hartree–Fock and hybrid density functional theory (DFT) calculations of allyl radical dimers to de
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