Electric-field-induced deformation and optical axis change by electroclinic effect in side-chain liquid-crystalline elastomers composed of polysiloxane backbone

Optical responses to electric stimulation in a monodomain side-chain SmA* elastomer have beeninvestigated. The electric-field-induced molecular tilt θM, caused by the electroclinic effect, was opticallyestimated in the SmA* phase. We observed the sample shrinkage along the layer normal was directlyc...

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Published inProceedings of Japanese Liquid Crystal Society Annual meeting Vol. 2019; p. PA01
Main Authors Taira, Shiori, Hoshono, Yuka, Huruya, Kazushi, Minami, Hiroyuki, Hiraoka, Kazuyuki
Format Journal Article
LanguageJapanese
Published THE JAPANESE LIQUID CRYSTAL SOCIETY 2019
一般社団法人 日本液晶学会
Online AccessGet full text
ISSN1880-3490
2432-5988
DOI10.11538/ekitou.2019.0_PA01

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Abstract Optical responses to electric stimulation in a monodomain side-chain SmA* elastomer have beeninvestigated. The electric-field-induced molecular tilt θM, caused by the electroclinic effect, was opticallyestimated in the SmA* phase. We observed the sample shrinkage along the layer normal was directlycoupled with the layer shrinkage caused by the electroclinic effect. θM, which is estimated to be 4° at -1.0V/μm, decreases with increasing field and reaches -4.5° at +1.0 V/μm after passing through the origin (0V/μm, 0°). On the other hand, the shear angle θE in shear deformation of the elastomer is estimated to beabout 0.08° – 0.09° in the E-field of +1.0 V/μm . The ratio of the tilt angle of the elastomer θE to themolecular tilt angle θM, namely, (θE /θM), is only about 0.02. The small ratio indicates that the tilt ofmesogens is indirectly coupled with the chain shape distribution of the polymer network in the elastomer,because the positional order of mesogens is liquid-like in smectic layers of the SmA*.
AbstractList Optical responses to electric stimulation in a monodomain side-chain SmA* elastomer have beeninvestigated. The electric-field-induced molecular tilt θM, caused by the electroclinic effect, was opticallyestimated in the SmA* phase. We observed the sample shrinkage along the layer normal was directlycoupled with the layer shrinkage caused by the electroclinic effect. θM, which is estimated to be 4° at -1.0V/μm, decreases with increasing field and reaches -4.5° at +1.0 V/μm after passing through the origin (0V/μm, 0°). On the other hand, the shear angle θE in shear deformation of the elastomer is estimated to beabout 0.08° – 0.09° in the E-field of +1.0 V/μm . The ratio of the tilt angle of the elastomer θE to themolecular tilt angle θM, namely, (θE /θM), is only about 0.02. The small ratio indicates that the tilt ofmesogens is indirectly coupled with the chain shape distribution of the polymer network in the elastomer,because the positional order of mesogens is liquid-like in smectic layers of the SmA*.
Author Minami, Hiroyuki
Taira, Shiori
Hoshono, Yuka
Huruya, Kazushi
Hiraoka, Kazuyuki
Author_FL 平岡 一幸
平 汐莉
星野 優香
南 博之
古屋 和志
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Snippet Optical responses to electric stimulation in a monodomain side-chain SmA* elastomer have beeninvestigated. The electric-field-induced molecular tilt θM, caused...
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Title Electric-field-induced deformation and optical axis change by electroclinic effect in side-chain liquid-crystalline elastomers composed of polysiloxane backbone
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