Syuji Fujii
Sumitomo Chemical
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Publication
Featured researches published by Syuji Fujii.
Archive | 2011
Syuji Fujii; Mizuho Kodama; Soichiro Matsuzawa; Hiroyuki Hamasaki; Atsushi Ohtaka; Yoshinobu Nakamura
Conducting polymers continue to be the focus of active research in diverse fields including electronics (Burroughes et al., 1988; Sailor et al., 1990; Gustafsson et al., 1992; Zhang et al., 1994), energy storage (Conway, 1991; Genies, 1991; Li et al., 1991), catalysis (Andrieux et al., 1982 ; Bull et al., 1983; Hable et al., 1993), chemical sensing (Josowicz et al., 1986; Heller, 1992; Gardner et al., 1993; Kuwabata et al., 1994; Freund et al., 1995) and biochemistry (Miller, 1988; Guimard et al., 2007). Despite the promise of these new materials and their widespread study, the scope of commercial uses remains small and relatively few viable technologies have emerged from the laboratory proof-of-concept stage. Limitations of processability such as low mechanical strength, poor flexibility and high cost have prevented conducting polymers from making significant commercial impact. In order to improve the processability of the conducting polymers, several approaches have been developed over the years: (1) synthesis of soluble conducting polymers by the addition of bulky side chains along the backbone (Wang et al., 2003), (2) synthesis in the form of colloidal dispersions by dispersion and emulsion polymerizations (Armes, 1998; Chehimi et al., 2004), (3) the use of metastable mixtures of monomer and oxidant that enable processability followed by in situ polymerization initiated by solvent evaporation (Grimaldo et al., 2007) and (4) fabrication of composite consisting of conducting polymers and substrates with high workability (Niwa et al., 1984; Paoli et al., 1984; Niwa et al., 1987; Yosomiya et al., 1986; Gregory et al., 1989; Heisey et al., 1993; Kuhn et al., 1995; Kincal et al., 1998; Appel et al., 1996; Collins et al., 1996; Kaynak et al., 2002; Han et al., 1999; Han et al., 2001; Dong et al., 2004; Dong et al., 2004; Abidian et al., 2006; Oh et al., 1999; Kim et al., 2002; Huang et al., 2005). There have been numerous reports on the deposition of air-stable conducting organic polymers such as polypyrrole (PPy), polyaniline (PANI), or poly(3,4ethylenedioxythiophene) (PEDOT) onto fibrous substrates (Gregory et al., 1989; Heisey et al., 1993; Kuhn et al., 1995; Kincal et al., 1998; Appel et al., 1996; Collins et al., 1996; Kaynak et al., 2002; Han et al., 1999; Han et al., 2001; Dong et al., 2004; Dong et al., 2004; Abidian et
日本接着学会誌 | 2015
Hiroaki Takeoka; Shizuka Wada; Shin-Ichi Yusa; Shinichi Sakurai; Yoshinobu Nakamura; Syuji Fujii
Journal of The Adhesion Society of Japan | 2008
Syuji Fujii; Minako Mouri; Atsushi Aichi; Kensuke Akamatsu; Hidemi Nawafune; Yoshinobu Nakamura; David P. Randall
Journal of The Adhesion Society of Japan | 2009
Mariko Sasaki; Hiroaki Honda; Shinji Nakano; Syuji Fujii; Yoshinobu Nakamura; Kazuya Nagata
NIPPON GOMU KYOKAISHI | 2008
Yoshinobu Nakamura; Hiroaki Honda; Atsushi Harada; Erina Kaji; Syuji Fujii; Takeo Iida; Kazuya Nagata
Journal of The Adhesion Society of Japan | 2008
Yoshinobu Nakamura; Takumi Gotoh; Hiroaki Honda; Mariko Kamiyama; Takeshi Nakamata; Syuji Fujii; Takeo Iida; Kazuya Nagata
Archive | 2017
Syuji Fujii; Ryu Takeko; Yoshinobu Nakamura
Journal of The Adhesion Society of Japan | 2016
Yoshinobu Nakamura; Masayo Noda; Kazuki Takakura; Syuji Fujii; Yoshiaki Urahama
Journal of The Adhesion Society of Japan | 2016
Yoshinobu Nakamura; Nozomi Karyu; Masayo Noda; Syuji Fujii
Journal of The Adhesion Society of Japan | 2016
Nozomi Karyu; Masayo Noda; Syuji Fujii; Yoshinobu Nakamura; Yoshiaki Urahama