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  4. Effect of Concentration on the Interfacial and Bulk Structure of Ionic Liquids in Aqueous Solution
 
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Effect of Concentration on the Interfacial and Bulk Structure of Ionic Liquids in Aqueous Solution

Journal
Langmuir : the ACS journal of surfaces and colloids
Journal Volume
34
Journal Issue
8
Pages
2637
Date Issued
2018-02-27
Author(s)
HSIU-WEI CHENG  
Weiss, H
Stock, P
Chen, Y-J
Reinecke, C R
Dienemann, J-N
Mezger, M
Valtiner, M
DOI
10.1021/acs.langmuir.7b03757
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/629616
URL
https://api.elsevier.com/content/abstract/scopus_id/85042676849
Abstract
Bio and aqueous applications of ionic liquids (IL) such as catalysis in micelles formed in aqueous IL solutions or extraction of chemicals from biologic materials rely on surface-active and self-assembly properties of ILs. Here, we discuss qualitative relations of the interfacial and bulk structuring of a water-soluble surface-active IL ([C8MIm][Cl]) on chemically controlled surfaces over a wide range of water concentrations using both force probe and X-ray scattering experiments. Our data indicate that IL structuring evolves from surfactant-like surface adsorption at low IL concentrations, to micellar bulk structure adsorption above the critical micelle concentration, to planar bilayer formation in ILs with <1 wt % of water and at high charging of the surface. Interfacial structuring is controlled by mesoscopic bulk structuring at high water concentrations. Surface chemistry and surface charges decisively steer interfacial ordering of ions if the water concentration is low and/or the surface charge is high. We also demonstrate that controlling the interfacial forces by using self-assembled monolayer chemistry allows tuning of interfacial structures. Both the ratio of the head group size to the hydrophobic tail volume as well as the surface charging trigger the bulk structure and offer a tool for predicting interfacial structures. Based on the applied techniques and analyses, a qualitative prediction of molecular layering of ILs in aqueous systems is possible.
Subjects
X-RAY REFLECTIVITY; ELECTROSTATIC SURFACE-POTENTIALS; PHYSICOCHEMICAL PROPERTIES; DISSIMILAR SURFACES; SILVER BEHENATE; LAYER GROWTH; WATER; DYNAMICS; SOLVATION; METAL
SDGs

[SDGs]SDG6

Publisher
AMER CHEMICAL SOC
Type
journal article

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