| Literature DB >> 26663074 |
Thibault Dutronc1, Emmanuel Terazzi2, Laure Guénée3, Kerry-Lee Buchwalder1, Sébastien Floquet4, Claude Piguet5.
Abstract
This work illustrates how enthalpy and entropy changes responsible for successive phase transitions of cyanobiphenyl-based liquid crystals can be combined to give cohesive free energy densities. These new parameters are able to rationalize and quantify the demixing of the melting and clearing processes that occur in thermotropic liquid crystals. Minor structural variations at the molecular level can be understood as pressure increments that alter either the melting or clearing temperatures in a predictable way. This assessment of microsegregation operating in amphiphilic molecules paves the way for the chemical programming of the domain of existence of liquid-crystalline phases.Entities:
Keywords: cyanobiphenyls; liquid crystals; phase transitions; structure elucidation; thermodynamics
Year: 2015 PMID: 26663074 DOI: 10.1002/chem.201503420
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236