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Noticias de la compañía :
- Physics of liquid crystals of bent-shaped molecules | Rev . . .
A small kink in the molecular shape can lead to new properties and liquid crystal phases This paper discusses the theory of liquid crystals of banana-shaped molecules and the underlying physics, and it reviews experimental research of both rigid and flexible bent-core molecules
- Physics of liquid crystals of bent-shaped molecules - NASA ADS
Thermotropic liquid crystals can be formed by various molecular shapes, some discovered over 125 years ago The simplest and most-studied liquid crystals are made of rod-shaped molecules and led to today's omnipresent liquid crystal displays
- Reviews of Modern Physics - Volume 90 Issue 4
Physics of liquid crystals of bent-shaped molecules Antal Jákli, Oleg D Lavrentovich, and Jonathan V Selinger Rev Mod Phys 90, 045004 (2018)
- In silico study of liquid crystalline phases formed by bent . . .
Using Monte Carlo and molecular dynamics simulations we numerically studied a liquid composed of achiral, bent-shaped molecules built of tangent spheres The system is known to spontaneously break mirror symmetry, as it forms a macroscopically chiral, twist-bend nematic phase [Phys Rev Lett 115 , 147801 (2015)]
- Antal Jakli - Google Scholar
Direct observation of liquid crystals using cryo‐TEM: Specimen preparation and low‐dose imaging M Gao, YK Kim, C Zhang, V Borshch, S Zhou, HS Park, A Jákli, Microscopy research and
- Converse Flexoelectric Effect in Bent-Core Nematic Liquid . . .
We report on the converse flexoelectric effect in two bent-core nematic liquid crystals with opposite dielectric anisotropies The results are based on electro-optic investigations of inplane field-driven distortions in homeotropic samples (the Helfrich method)
- Physics of liquid crystals of bent-shaped molecules
Physics of liquid crystals of bent-shaped molecules Antal Jákli, Oleg D Lavrentovich and Jonathan V Selinger Department of Physics and Chemical Physics Interdisciplinary Program, Liquid Crystal Institute, Kent State University, Kent, OH 44242, USA Abstract: Thermotropic liquid crystals can be formed by various molecular shapes, some
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