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Catalysis Research Center And Graduate School Of Pharmaceutical Sciences Hokkaido University And Cre | 論文
- Substituent Effect on Regioselectivity in Oxygenation of Multisubstituted Acenes
- Aromatization of Highly Alkyl-substituted Dihydroanthracenes Using n-BuLi/TMEDA/Mel
- Formation of Ethylene-Bridged Bimetallic Zirconocene Complexes by Coupling of Cp_2ZrEt_2 and Cp_2ZrX_2 (X = Cl or Br)
- Effects of Pressure on the Thermal Back Electron Transfer in a Dibenzylbipyridinium Salt. Solvent Reorganizations and Dynamic Solvent Effects
- Evidence for Two Competing Mechanisms in Regeneration of 2-(2, 4-Dinitrobenzyl)pyridine from its Enamine Tautomer
- A New Application of High-Viscosity Kinetics. An Attempt to Identify a Site of Solvent Reorganizations around a Reactant
- Solvent and Pressure Dependence of the Energy Profile for the Thermal Fading of a Merocyanine Formed from a Spironaphthoxazine
- Carbon-Carbon Bond Cleavage and Selective Transformation of Zirconacycles
- Copper-Catalyzed or Mediated Carbon-Carbon Bond Formation Reactions of Zirconacycles and Alkenylzirconocenes
- Substituent-Dependent Selective Replacement of Alkyne Moieties of Zirconacyclopentadienes via C-C Bond Cleavage Reaction
- N_2-Binding Mononuclear Ruthenium(II) Tertiary Polyamine Complex by Direct Action of Gaseous Nitrogen in Aqueous Solution
- Dynamics in N_2 Uptake by New Ruthenium(II) Tertiary Polymine Complexes in Aqueous Solution
- An Experimental Attempt to Identify a Moving Molecular Moiety in a Solvent Matrix
- Unusual Conformational Isomer of 9,10-Dihydro-l,2,3,4,5,6,7,8-octapropylanthracene in Solid State
- Efficient Hg(II) Ion Transport through Liquid Membranes by Diamide Derivatives of Methionine with a 8-Quinolyl Group
- Alkene and Alkyne Complexes of Zirconocene. Their Preparation, Structure, and Novel Transformations
- Formation of Zirconacyclohexadienes from Zirconacyclopentadienes and LiCHClSiR_3
- Reduction of Molybdenum(V) Chloride with Various Reducing Metals:Reactivity Correlations with the Descendant Lewis Acids
- Ni-Catalyzed Homocoupling of 3-Halopropenoates in the Presence of Water:Formation of Hexenedioates
- Strategic Gene Transfer into the Kidney: Current Status and Prospects
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