Logo image
Self-organization of a hydrophilic short-chain ionic liquid confined within a hydrophobic nanopore
Journal article   Peer reviewed

Self-organization of a hydrophilic short-chain ionic liquid confined within a hydrophobic nanopore

Ching-Mao Wu, Szu-Yin Lin, Kuei-Yu Kao and Hsin-Lung Chen
Journal of Physical Chemistry C, Vol.118(31), pp.17764-17772
07/08/2014

Abstract

Ionogel refers to the nanocomposite material composed of ionic liquid (IL) entrapped within the solid matrix. The performance of ionogel was predominantly dependent on whether the ILs within the pore of the matrix formed ordering or not. Thus far, such ordering information was largely provided via simulating the arrangement of ILs confined within nanopores with ordered geometry. However, experimental evidence was still lacking. Herein, we studied the ordering of a short-chain IL (1-butyl-3-methylimidazolium tertrafluoroborate) confined within the two distinct nanopores (radius-various H 2 pore and slit-shaped H 3 pore) of the methylated silica matrix with a fractal network by small-angle X-ray scattering. The results obviously indicated that these confined IL molecules indeed formed a self-organized ordering in the H 3 nanopores, as is directly observed a correlation peak in the scattering patterns. We speculated on the plausible formation mechanism of this ordering in H 3 nanopores according to "the effects of broad pore sizes and rough surface topography on the pore wall". © 2014 American Chemical Society.

Metrics

1 Record Views

Details

Logo image