Kazuhide Morino
Nagoya University
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Featured researches published by Kazuhide Morino.
Journal of the American Chemical Society | 2009
Satoshi Abe; Kunio Hirata; Takafumi Ueno; Kazuhide Morino; Nobutaka Shimizu; Masaki Yamamoto; Masaki Takata; Eiji Yashima; Yoshihito Watanabe
Polymerization reactions of phenylacetylene derivatives are promoted by rhodium complexes within the discrete space of apo-ferritin in aqueous media. The catalytic reaction provides polymers with restricted molecular weight and a narrow molecular weight distribution. These results suggest that protein nanocages have potential for use as various reaction spaces through immobilization of metal catalysts on the interior surfaces of the protein cages.
Chemistry: A European Journal | 2002
Kazuhide Morino; Katsuhiro Maeda; Yoshio Okamoto; Eiji Yashima; Takahiro Sato
The temperature dependence of the helical conformations for the homopolymers of phenylacetylene derivatives bearing an optically active substituent, such as the (R)-((1-phenylethyl)carbamoyl)oxy and (R)-((1-(1-naphthyl)ethyl)carbamoyl)oxy groups at the phenyl group, and their copolymers with achiral phenylacetylenes were investigated in solution using circular dichroism (CD) and absorption spectroscopies. The magnitude of the induced CD (ICD) of the optically active homopolymers increased with decreasing temperature and was accompanied by a blueshift in their absorption maxima. On the other hand, the copolymers with achiral phenylacetylenes exhibited interesting ICD changes with temperature, depending on the bulkiness of the achiral comonomers. The copolymers with a less bulky phenylacetylene had a very intense ICD at low temperatures, the ICD pattern was almost opposite to those of the chiral homopolymers, while the copolymers with the most bulky phenylacetylene bearing a tert-butyldiphenylsiloxy group at the para position showed an ICD change similar to that of the optically active homopolymers. However, the copolymers with the phenylacetylene bearing a tert-butyldimethylsiloxy group with intermediate bulkiness at the para position showed no ICD change with temperature. These results indicate that the prevailing helix-sense of the chiral-achiral random copolymers of the phenylacetylenes is determined by a delicate interaction between the chiral and achiral side chains. The thermodynamic stability parameters for the helical conformations of the homopolymers and copolymers of the phenylacetylenes were estimated from the temperature dependence of the ICDs.
Chemical Communications | 2007
Shinzo Kobayashi; Kazuhide Morino; Eiji Yashima
An optically active helical poly(phenylacetylene) was synthesized by the copolymerization of phenylacetylenes bearing optically active hydroxy or ester groups obtained by the kinetic resolution of a racemic phenylacetylene with lipase; the helix-sense was inverted from one helix to another by the further chemical modification of the hydroxy groups with achiral bulky isocyanates or an acid chloride.
Journal of the American Chemical Society | 2004
Katsuhiro Maeda; Kazuhide Morino; Yoshio Okamoto; Takahiro Sato; Eiji Yashima
Angewandte Chemie | 2006
Hisanari Onouchi; Toyoharu Miyagawa; Kazuhide Morino; Eiji Yashima
Macromolecules | 2007
Katsuhiro Maeda; Kiyoshi Tanaka; Kazuhide Morino; Eiji Yashima
Macromolecules | 2003
Kazuhide Morino; Katsuhiro Maeda; Eiii Yashima
Macromolecules | 2008
Teng Ben; Hidetoshi Goto; Kazuhiro Miwa; Hiroaki Goto; Kazuhide Morino; Yoshio Furusho; Eiji Yashima
Macromolecules | 2005
Kazuhide Morino; Masato Oobo; Eiji Yashima
Macromolecules | 2003
Yuichi Ashida; Takahiro Sato; Kazuhide Morino; Katsuhiro Maeda; Yoshio Okamoto; Eiji Yashima