Steep electro-optical response of nematic liquid crystalline molecules induced by addition of polymeric chains

The steepness increases with a decrease in the ratio of elastic constants of the bend to the splay mode, K 3 /K 1 . The elastic constants of nematic directors are affected by the geometrical shape of a liquid crystalline molecule and a short range ordering for the alignment of liquid crystalline mol...

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Veröffentlicht in:Liquid crystals 1996-12, Vol.21 (6), p.807-815
Hauptverfasser: Kibe, Shigeru, Kikuchi, Hirotsugu, Kajiyama, Tisato
Format: Artikel
Sprache:eng
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Zusammenfassung:The steepness increases with a decrease in the ratio of elastic constants of the bend to the splay mode, K 3 /K 1 . The elastic constants of nematic directors are affected by the geometrical shape of a liquid crystalline molecule and a short range ordering for the alignment of liquid crystalline molecules. The magnitude of K 3 /K 1 and the reorientational steepness of the nematic director were evaluated by an electric capacitance measurement of the (side chain-type liquid crystalline polymer (PS6EC)/low molecular weight liquid crystal (E7)) composite system cell. It became apparent from X-ray diffraction studies that the smectic-like short range ordering increases with increasing the fraction of PS6EC even in the nematic state of the composite system. Furthermore, a remarkably steep electro-optical response was successfully achieved.
ISSN:0267-8292
1366-5855
DOI:10.1080/02678299608032897