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Dive into the research topics where Yoshihiro Sako is active.

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Featured researches published by Yoshihiro Sako.


Liquid Crystals | 1993

2-Hydroxy-5,5-dialkyl-δ-valerolactone derivatives as chiral dopants for practical ferroelectric liquid crystals

Keiichi Sakashita; Tetsuya Ikemoto; Yuriko Nakaoka; Fumiko Terada; Yoshihiro Sako; Yoshitaka Kageyama; Kenji Mori

Abstract 2-Hydroxy-5,5-dialkyl-δ-valerolactone derivatives have shown interesting properties as a chiral dopant for ferroelectric liquid crystals. In small amounts these compounds induce high magnitudes of spontaneous polarization and long helical pitches in the chiral nematic phase (N*). Alkyl chains attached at the C-5 position play an important role in these properties. Here we discuss the stereochemistry and ferroelectric properties of these lactones and compare them with those of 2-hydroxy-5-alkyl-δ-valerolactone derivatives reported previously. The ring structure of 5,5-dialkyl-δ-valerolactone is found to be a rigid ‘pseudo-chair’ conformation by *H NMR studies.


Liquid Crystals | 1992

Stereochemical studies of optically active 2-hydroxy-5-alkyl-δ-valerolactone derivatives as chiral dopant for ferroelectric liquid crystals

Keiichi Sakashita; Tetsuya Ikemoto; Yuriko Nakaoka; Shigeo Kamimura; Yoshitaka Kageyama; Fumiko Terada; Yoshihiro Sako; Kenji Mori

Abstract Both (2S, 5R)- and (2R, 5R)-2-hydroxy-5-alkyl-δ-valerolactone derivatives, cis and trans, respectively, show almost the same magnitude of spontaneous polarization (P s) when added to a non-chiral smectic C mixture. The stereochemistry of these chiral dopants was studied using 1H NMR. Trans derivatives seem to have a half-chair conformation with the 2, 5-diequatorial substituents and the cis derivatives have rather a flat conformation in solution. However in the liquid-crystalline phase, the cis and trans derivatives appear to change their conformation or the distribution of their conformations as the alkyl chain length is varied. The difference in the effect as a chiral dopant depends upon lateral interactions between chiral molecules through the solvent liquid crystal phase.


Archive | 2010

Porous electrode base material, process for production thereof, precursor sheet, film-electrode assembly, and solid polymer fuel cell

Kazuhiro Sumioka; Yoshihiro Sako


Archive | 2010

Porous electrode substrate, method for producing the same, membrane electrode assembly, and polymer electrolyte fuel cell

Kazuhiro Sumioka; Yoshihiro Sako


Archive | 2010

Porous electrode substrate, method for producing the same, membrane-electrode assembly, and solid polymer-type fuel cell

Kazuhiro Sumioka; Yoshihiro Sako


Archive | 2010

Porous electrode substrate and method for producing the same

Kazuhiro Sumioka; Yoshihiro Sako


Archive | 1990

OPTICAL ACTIVE COMPOUND AND LIQUID CRYSTAL COMPOSITION

Tetsuya Ikemoto; Keiichi Sakashita; Seiji Hayashi; Yoshitaka Kageyama; Yoshihiro Sako; Kenji Mori; Jun Nakauchi


Archive | 2012

Porous electrode base material, method for manufacturing same, membrane-electrode assembly, solid polymer fuel cell, precursor sheet, and fibrillar fibers

Kazuhiro Sumioka; Shigeru Tanoue; Yoshihiro Sako


Archive | 2010

Porous electrode substrate, method for producing the same, precursor sheet, membrane electrode assembly, and polymer electrolyte fuel cell

Kazuhiro Sumioka; Yoshihiro Sako


Archive | 2011

Porous electrode substrate and process for production thereof, porous electrode substrate precursor sheet, membrane-electrode assembly, and polymer electrolyte fuel cell

Kazuhiro Sumioka; Yoshihiro Sako

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Jun Nakauchi

University of Tokushima

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