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Development of ferroelectric liquid crystals with low birefringence
Authors:Evgeny Pozhidaev  Sofia Torgova  Vadim Barbashov  Vladimir Kesaev  Francesco Laviano
Affiliation:1. Optoelectronic Department, P.N. Lebedev Physical Institute of the Russian Academy of Sciences (FIAN), Moscow, Russia;2. Department of Applied Science and Technology (DISAT), Politecnico di Torino, Physics Institute of Condensed Matter and Complex Systems, CNISM, Torino, Italy
Abstract:We propose an approach for development of ferroelectric liquid crystals (FLC) with low birefringence Δn. Two basic principles have been used to get lowering of Δn: selection of molecules with short chains of conjugation as components for achiral matrix and averaging of local refractive indices by FLC helical structure. FLC mixtures with low birefringence (0.07 < Δn < 0.10 at wavelength 589.3 nm of sodium line) were elaborated and investigated. They consist of an achiral matrix including both nematic and smectic liquid crystal components and of phenylpyrimidine derivatives as chiral dopants. The materials developed can be used for all basic electro-optical FLC modes such as surface stabilised FLC (SSFLC), deformed helix ferroelectrics (DHF) and electrically suppressed helix (ESH). The mixtures developed allow to reduce the FLC cells chromatic retardance variation due to the weaker birefringence dispersion as compared with the known FLC materials to date.
Keywords:Ferroelectric liquid crystal  phenacyl esters  Demus ester  chains of conjugation  birefringence
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