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Characterization of the phase behaviour of a novel polymerizable lyotropic ionic liquid crystal

Overview of attention for article published in Journal of the Chemical Society, Faraday Transactions, January 2015
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Title
Characterization of the phase behaviour of a novel polymerizable lyotropic ionic liquid crystal
Published in
Journal of the Chemical Society, Faraday Transactions, January 2015
DOI 10.1039/c5cp03797b
Pubmed ID
Authors

Nicolas Goujon, Maria Forsyth, Ludovic F. Dumée, Gary Bryant, Nolene Byrne

Abstract

The development of new polymerizable lyotropic liquid crystals (LLCs) utilizing charged amphiphilic molecules such as those based on long chain imidazolium compounds, is a relatively new design direction for producing robust membranes with controllable nano-structures. Here we have developed a novel polymerizable ionic liquid based LLC, 1-hexadecyl-3-methylimidazolium acrylate (C16mimAcr), where the acrylate anion acts as the polymerizable moiety. The phase behaviour of the C16mimAcr upon the addition of water was characterized using small and wide angle X-ray scatterings, differential scanning calorimetry and polarized optical microscopy. We compare the phase behaviour of this new polymerizable LLC to that of the well known LLC chloride analogue, 1-hexadecyl-3-methylimidazolium chloride (C16mimCl). We find that the C16mimAcr system has a more complex phase behaviour compared to the C16mimCl system. Additional lyotropic liquid crystalline mesophases such as hexagonal phase (H1) and discontinuous cubic phase (I1) are observed at 20 °C for the acrylate system at 50 and 65 wt% water respectively. The appearance of the hexagonal phase (H1) and discontinuous cubic phase (I1) for the acrylate system is likely due to the strong hydrating nature of the acrylate anion, which increases the head group area. The formation of these additional mesophases seen for the acrylate system, especially the hexagonal phase (H1), coupled with the polymerization functionality offers great potential in the design of advanced membrane materials with selective and anisotropic transport properties.

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Mendeley readers

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Geographical breakdown

Country Count As %
Unknown 32 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 7 22%
Student > Ph. D. Student 7 22%
Researcher 6 19%
Student > Doctoral Student 3 9%
Professor > Associate Professor 1 3%
Other 0 0%
Unknown 8 25%
Readers by discipline Count As %
Chemistry 12 38%
Physics and Astronomy 2 6%
Engineering 2 6%
Biochemistry, Genetics and Molecular Biology 1 3%
Agricultural and Biological Sciences 1 3%
Other 4 13%
Unknown 10 31%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 14 August 2015.
All research outputs
#20,970,494
of 25,756,911 outputs
Outputs from Journal of the Chemical Society, Faraday Transactions
#10,058
of 17,201 outputs
Outputs of similar age
#268,963
of 361,654 outputs
Outputs of similar age from Journal of the Chemical Society, Faraday Transactions
#507
of 786 outputs
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