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Kitaura

Maki M, Kitaura Y, Satoh H et al (2002) Structures, functions and molecular evolution of the penta-EF-hand Ca2+-binding proteins. Biochim Biophys Acta 1600 51-60... [Pg.295]

Katsumura, Kitaura and their coworkers [74] found and discussed the high reactivity of vinylic vs allylic hydrogen in the photosensitized reactions of twisted 1,3-dienes in terms of the interaction in the perepoxide structure. Yoshioka and coworkers [75] investigated the effects of solvent polarity on the product distribution in the reaction of singlet oxygen with enolic tautomers of 1,3-diketones and discussed the role of the perepoxide intermediate or the perepoxide-Uke transition state to explain their results. A recent review of the ene reactions of was based on the significant intervention of the perepoxide structure [76], which can be taken as a quasi-intermediate. [Pg.38]

Kitaura M, Nishimura M, Kakizaki M, Nomiyama H, Yoshie O Molecular cloning of a novel human CC chemokine EBIl-ligand chemokine that is a specific functional ligand for EBIl, CCR7. J Biol Chem 1997 272 13803-13809. 77... [Pg.40]

Hong H, Kitaura J, Xiao W, Horejsi V, Ra C, Lowell CA, Kawakami Y Kawakami X Xhe Src family kinase Hck regulates mast cell activation by suppressing an inhibitory Src family kinase Lyn. Blood 2007 110 2511-2519. [Pg.64]

Miyake, K. Kitaura, F. Mizuno, N., Phosphatidylcholine-coated silica as a useful stationary phase for high-performance liquid chromatographic determination of partition coefficients between octanol and water, J. Chromatogr. 389, 47-56 (1987). [Pg.267]

Kitaura K, Morokuma K (1976) A new energy decomposition scheme for molecular interactions within the Hartree-Fock approximation. Int J Quantum Chem 10 325... [Pg.169]

Matsuda R, Kitaura R, Kitagawa S, Kubota Y, Belosludov RV, Kobayashi TC, Sakamoto H, Chiba T, Takata M, Kawazoe Y, Mita Y (2005) Nature 436 238-241... [Pg.213]

Wei S, Kitaura H, Zhou P, Ross FP, Teitelbaum SL (2005) IL-1 mediates TNF-induced osteodastogenesis. J Clin Invest 115 282-290... [Pg.189]

TABLE 10. Morokuma-Kitaura component analysis of the SCF interaction energy of the water dimer ... [Pg.1054]

K. Morokuma and K. Kitaura, in Chemical Applications of Atomic and Molecular Electrostatic Potentials (Eds. P. Politzer and D. G. Truhlar), Plenum Press, New York, 1980, pp. 215 - 242. [Pg.1085]

C. Zhao, R. Kitaura, H. Hara, S. Irle, H. Shinohara, Growth of linear carbon chains inside thin double-wall carbon nanotubes, J. Phys. Chem. C, vol. 115, p. 13166-13170, 2011. [Pg.107]

Fig. 11.7 Schematic diagram of an all-solid state lithium-air battery using lithium anode, an inorganic solid electrolyte, and an air electrode composed of carbon nanotubes and solid electrolyte particles. Reprinted with permission from Hirokazu Kitaura etai, Energy Environ. Sci., 2012, 5,... Fig. 11.7 Schematic diagram of an all-solid state lithium-air battery using lithium anode, an inorganic solid electrolyte, and an air electrode composed of carbon nanotubes and solid electrolyte particles. Reprinted with permission from Hirokazu Kitaura etai, Energy Environ. Sci., 2012, 5,...

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Decomposition Kitaura-Morokuma

Kitaura-Morokuma

Kitaura-Morokuma analysis

Kitaura-Morokuma approach

Kitaura-Morokuma decomposition scheme

Kitaura-Morokuma energy

Kitaura-Morokuma energy decomposition analysis

Kitaura-Morokuma scheme

Morokuma-Kitaura energy decomposition

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