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Diversifying the solid state and lyotropic phase behavior of nonionic urea-based surfactants

journal contribution
posted on 2024-11-01, 02:58 authored by Celesta Fong, Darrell Wells, Irene Krodkiewska, Asoka Weerawardeena, Jamie Booth, Patrick Hartley, Calum DrummondCalum Drummond
The solid state and lyotropic phase behavior of 10 new nonionic urea-based surfactants has been characterized. The strong homo-urea interaction, which can prevent urea surfactants from forming lyotropic liquid crystalline phases, has been ameliorated through the use of isoprenoid hydrocarbon tails such as phytanyl (3,7,11,15-tetramethyl-hexadecyl) and hexahydrofarnesyl (3,7,11-trimethyl-dodecyl) or the oleyl chain (cis-octadec-9-enyl). Additionally, the urea head group was modified by attaching either a hydroxy alkyl (short chain alcohol) moiety to one of the nitrogens of the urea or by effectively "doubling" the urea head group by replacing it with a biuret head group. The solid state phase behavior, including the liquid crystal-isotropic liquid, polymorphic, and glass transitions, is interpreted in terms of molecular geometries and probable hydrogen-bonding interactions. Four of the modified urea surfactants displayed ordered lyotropic liquid crystalline phases that were stable in excess water at both room and physiological temperatures, namely, 1-(2-hydroxyethyl)-1-oleyl urea (oleyl 1,1-HEU) with a 1D lamellar phase (L?), 1-(2-hydroxyethyl)-3-phytanyl urea (Phyt 1,3-HEU) with a 2D inverse hexagonal phase (HII), and 1-(2-hydroxyethyl)-1-phytanyl urea (Phyt 1,1-HEU) and 1-(2-hydroxyethyl)-3-hexahydrofarnesyl urea (Hfarn 1,3-HEU) with a 3D bicontinuous cubic phase (QII). Phyt 1,1-HEU exhibited rich mesomorphism (QII1, QII2, L?, LU, and HII), as did one other surfactant, oleyl 1,3-HEU (QII1, QII2, L?, LU, and HII), in the study group.

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    ISSN - Is published in 15206106

Journal

Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces and Biophysical

Volume

111

Start page

10713

End page

10722

Total pages

10

Publisher

American Chemical Society

Place published

Washington

Language

English

Copyright

© 2008 American Chemical Society

Former Identifier

2006005742

Esploro creation date

2020-06-22

Fedora creation date

2009-02-27

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