1 |
Elucidation of inhibitors in the dimerization of acrylonitrile using [RUCl2(DMSO)(4)/CH3CH2COONa/DMSO/o-benzoylbenzoic acid] as catalyst Kashiwagi K, Sugise R, Shimakawa T, Matuura T, Shirai M Journal of Molecular Catalysis A-Chemical, 286(1-2), 120, 2008 |
2 |
Ambipolar carrier transport in terphenyl derivative Takayashiki Y, Iino H, Shimakawa T, Hanna J Molecular Crystals and Liquid Crystals, 480, 295, 2008 |
3 |
Improvement of catalyst activity in the Ru-catalyzed dimerization of acrylonitrile by using diphenyl ether as a solvent Kashiwagi K, Sugise R, Shimakawa T, Matuura T Chemistry Letters, 36(11), 1384, 2007 |
4 |
Ruthenium-catalyzed dimerization of acrylonitrile in the presence of carboxylic acids Kashiwagi K, Sugise R, Shimakawa T, Matuura T, Shirai M Journal of Molecular Catalysis A-Chemical, 264(1-2), 9, 2007 |
5 |
Linear relationship between activity of a new Ru-catalyst and acidity of substituted benzoic acids in the dimerization of acrylonitrile Kashiwagi K, Sugise R, Shimakawa T, Matuura T, Shirai M Chemistry Letters, 35(2), 186, 2006 |
6 |
Effect of AZO film deposition conditions on the photovoltaic properties of AZO-Cu2O heterojunctions Tanaka H, Shimakawa T, Miyata T, Sato H, Minami T Applied Surface Science, 244(1-4), 568, 2005 |
7 |
Electrical and optical properties of TCO-Cu2O heterojunction devices Tanaka H, Shimakawa T, Miyata T, Sato H, Minami T Thin Solid Films, 469-470, 80, 2004 |
8 |
Estimation of minimum power consumption and pumps cost for the differential pumping system Itou Y, Hirai E, Shimakawa T Applied Surface Science, 169, 792, 2001 |