JOURNAL ARTICLE

Diverse Ordered 3D Nanostructured Amphiphile Self-Assembly Materials Found in Protic Ionic Liquids

Xavier MuletDanielle F. KennedyTamar L. GreavesLynne J. WaddingtonAdrian HawleyNigel KirbyCalum J. Drummond

Year: 2010 Journal:   The Journal of Physical Chemistry Letters Vol: 1 (18)Pages: 2651-2654   Publisher: American Chemical Society

Abstract

Protic ionic liquids (PILs) have been shown to provide media for small amphiphilic molecule self-assembly into periodic 3D geometries. The ability of phytantriol and monoolein to self-assemble into ordered 3D nanostructures analogous to structures observed in aqueous solvents has been demonstrated. Monoolein in ethanolammonium formate (EOAF) formed the double diamond lyotropic liquid crystalline cubic mesophase, and phytantriol formed the gyroid cubic mesophase at 25 °C. The monoolein cubic mesophase was successfully dispersed in excess PIL, forming nanostructured nanoparticles, and imaged by cryo-transmission electron microscopy. The self-assembled materials reported herein can be considered for soft-templating of material structures during synthesis, as encapsulation and controlled release media, as carrier particles in transport phenomena, and as supports for catalysts where the process conditions require a nonaqueous environment.

Keywords:
Mesophase Lyotropic Gyroid Amphiphile Materials science Self-assembly Lyotropic liquid crystal Ionic liquid Transmission electron microscopy Chemical engineering Nanostructure Solvophobic Mesoporous material Nanoparticle Liquid crystal Aqueous solution Nanotechnology Molecule Organic chemistry Copolymer Liquid crystalline Chemistry Catalysis Composite material Polymer

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22
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0.77
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Citation History

Topics

Ionic liquids properties and applications
Physical Sciences →  Chemical Engineering →  Catalysis
Surfactants and Colloidal Systems
Physical Sciences →  Chemistry →  Organic Chemistry
Mesoporous Materials and Catalysis
Physical Sciences →  Materials Science →  Materials Chemistry
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