Zobrazeno 1 - 10
of 55
pro vyhledávání: '"Junko Ichihara"'
Autor:
Atsushi Ohtaka, Osamu Shimomura, Shunro Yamaguchi, Manabu Kirino, Ryoki Nomura, Junko Ichihara, Takatoshi Nishisako
Publikováno v:
Journal of Molecular Catalysis A: Chemical. 411:230-238
The latent catalytic abilities of tertiary amines-intercalated α-zirconium phosphate [(α-ZrP·amine): 1,4-diazabicyclo[2,2,2]octane (α-ZrP·DABCO) and 1,8-diazabicyclo[5,4,0]undec-7-ene (α-ZrP·DBU)] were examined by copolymerization of glycidyl
Autor:
Osamu Shimomura, Atsushi Ohtaka, Shunro Yamaguchi, Kensuke Tokizane, Junko Ichihara, Ryoki Nomura, Takatoshi Nishisako, Manabu Kirino
Publikováno v:
Catalysts; Volume 7; Issue 6; Pages: 172
The capabilities of imidazoles-intercalated α-zirconium phosphate (α-ZrP·imidazole): imidazol (α-ZrP·Im), 2-methylimidazole (α-ZrP·2MIm), and 2-ethyl-4-methylimidazole (α-ZrP·2E4MIm) as latent thermal initiators were examined by the copolyme
Autor:
Junko Ichihara, Ryoki Nomura, Keisuke Maeno, Osamu Shimomura, Kiyoko Sakamoto, Atsushi Ohtaka, Shunro Yamaguchi
Publikováno v:
Journal of Polymer Science Part A: Polymer Chemistry. 52:1854-1861
The reaction of glycidyl phenyl ether (GPE) with 1-aminoalkanes-intercalated α-zirconium phosphate (α-ZrP·1-aminoalkane): 1-aminoalkanes 1-aminopropane (α-ZrP·Pr), 1-aminobutane (α-ZrP·Bu), 1-aminooctane (α-ZrP·Oct), and 1-aminohexadecane (
Autor:
Takuya Nomoto, Katsuhiko Satoh, Yoshiaki Tsunawaki, Shunro Yamaguchi, Takayoshi Kimura, Junko Ichihara, Ichiro Fujihara, Kiyoko Sakamoto
Publikováno v:
Journal of the Ceramic Society of Japan. 121:714-722
Autor:
Fumio Endo, Yuichi Kondo, Tomoyasu Kawano, Norihiro Itoh, Hitoshi Nakazato, Hiroshi Mitsubuchi, Kazuhiko Nishi, Ayumi Satoh, Kenichi Tanaka, Hiroshi Tamura, Junko Ichihara, Mami Karashima, Shirou Matsumoto, Kiyoko Hattori, Masanori Iwai
Publikováno v:
Nihon Shoni Jinzobyo Gakkai Zasshi. 24:68-73
新生児ヘモクロマトーシスは新生児早期より肝臓を中心に鉄の沈着を生じ,重篤な肝障害を呈する稀な疾患で,肝障害が急速に進行し致死的になることが多い。 今回われわれは,新生児
Autor:
Yoh Sasaki, Junko Ichihara
Publikováno v:
Catalysis Today. 117:120-125
We have developed an efficient catalytic solid-phase system for epoxidations that uses cetylpyridinium dodecatungstate ((CetylPy)10[H2W12O42]) catalyst/fluorapatite (FAp) disperse phase with a solid urea–hydrogen peroxide complex (urea–H2O2). The
Publikováno v:
Catalysis Today. 111:349-353
We developed a solid-phase-oxidation-system using FAp disperse phase and vanadomolybdophosphoric acid (H3+nPVnMo12−nO40: PVn) catalysts with molecular oxygen as a new green reaction system. The PV4/FAp system was an efficient and recyclable solid
Publikováno v:
Phosphorus Research Bulletin. 19:142-146
Publikováno v:
Phosphorus Research Bulletin. 17:211-214
Publikováno v:
Catalysis Today. 87:163-169
On the basis of new concept using a solid disperse phase we have developed an efficient catalytic solid-phase-system for epoxidations of alkenes using urea–hydrogen peroxide (urea–H2O2) complex and cetylpyridinium dodecatungstate ((CetylPy)10[H2W