Research output: Contribution to journal › Article › peer-review
Journal | Chemistry : A European Journal (Weinheim an der Bergstrasse, Germany) |
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Date | E-pub ahead of print - 20 Apr 2015 |
Date | Published (current) - 18 May 2015 |
Issue number | 22 |
Volume | 21 |
Number of pages | 10 |
Pages (from-to) | 8158-8167 |
Early online date | 20/04/15 |
Original language | English |
The nematic twist-bend phase (N<inf>TB</inf>) was, until recently, only observed for polar mesogenic dimers, trimers or bent-core compounds. In this article, we report a comprehensive study on novel apolar materials that also exhibit N<inf>TB</inf> phases. The N<inf>TB</inf> phase was observed for materials containing phenyl, cyclohexyl or bicyclooctyl rings in their rigid-core units. However, for materials with long (>C7) terminal chains or mesogenic core units comprising three ring units, the N<inf>TB</inf> phase was not observed and instead the materials exhibited smectic phases. One compound was found to exhibit a transition from the N<inf>TB</inf> phase to an anticlinic smectic C phase; this is the first example of this polymorphism. Incorporation of lateral substitution with respect to the central core unit led to reductions in transition temperatures; however, the N<inf>TB</inf> phase was still found to occur. Conversely, utilising branched terminal groups rendered the materials non-mesogenic. Overall, it appears that it is the gross molecular topology that drives the incidence of the N<inf>TB</inf> phase rather than simple dipolar considerations. Furthermore, dimers lacking any polar groups, which were prepared to test this hypothesis, were found to be non mesogenic, indicating that at the extremes of polarity these effects can dominate over topology.
Project: Research project (funded) › Research
Project: Research project (funded) › Research
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