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Comparison of phase situation in recently prepared chiral, racemic and achiral anticlinic high tilted compounds (2005)
Journal Article
Dąbrowski, R., Gąsowska, J., Filipowicz, M., Przedmojski, J., Tykarska, M., Otón, J., …Bennis, N. (2005). Comparison of phase situation in recently prepared chiral, racemic and achiral anticlinic high tilted compounds. Phase Transitions, 78(12), 927-942. https://doi.org/10.1080/01411590500436135

Homologous series of three ring esters (biphenylates and benzoates) – chiral (S), racemic (R,S) and achiral (either isopropyl or 4-heptyl chain) were tested by DSC, X-ray and electrooptic methods. It was found that in chiral, racemic and achiral homo... Read More about Comparison of phase situation in recently prepared chiral, racemic and achiral anticlinic high tilted compounds.

Structure and electrooptical properties of orthoconic antiferroelectric liquid crystalline materials (2005)
Conference Proceeding
Dabrowski, R., Czuprynski, K., Gasowska, J., Tykarska, M., Kula, P., Dziaduszek, J., …Benis, N. (2005). Structure and electrooptical properties of orthoconic antiferroelectric liquid crystalline materials. In Proceedings Volume 5947, Liquid Crystals: Optics and Applications. https://doi.org/10.1117/12.619805

The optic and electrooptic properties of recently prepared orthoconic antiferroelectrics have been revieved. Relation between their chemical structure and mesogenic properties, smectic layer structure and helical pitch is discussed.

Orthoconic antiferroelectric liquid crystalline materials (2005)
Journal Article
Czuprynski, K., Gasowska, J., Tykarska, M., Kula, P., Sokól, E., Piecek, W., …Castillo, M. (2005). Orthoconic antiferroelectric liquid crystalline materials. Journal of Optical Technology, 72(9), 655-658. https://doi.org/10.1364/jot.72.000655

New LC materials based on chain fluorinated homologous ester series and exhibiting high tilt angles of the synclinic and anticlinic smectic C phases to the layer surface are synthesized. Their mixtures in surface-stabilized geometry show an unusually... Read More about Orthoconic antiferroelectric liquid crystalline materials.