Concentration- and Temperature-Responsive Reversible Transition in Amide-Functionalized Surface-Active Ionic Liquids: Micelles to Vesicles to Organogel
Author(s) -
Muzammil Kuddushi,
Arvind Kumar,
Debes Ray,
Vinod K. Aswal,
Omar A. El Seoud,
Naved I. Malek
Publication year - 2020
Publication title -
acs omega
Language(s) - English
Resource type - Journals
ISSN - 2470-1343
DOI - 10.1021/acsomega.0c02397
Subject(s) - micelle , amphiphile , ionic liquid , biocompatibility , amide , vesicle , self assembly , molecule , nanotechnology , ionic bonding , materials science , aqueous solution , chemistry , chemical engineering , copolymer , organic chemistry , membrane , polymer , ion , catalysis , biochemistry , engineering
A ubiquitous example of DNA and proteins inspires the scientific community to design synthetic systems that can construct various self-assembled complex nano-objects for high-end physiological functions. To gain insight into judiciously designed artificial amphiphilic structures that through self-assembling form various morphological architectures within a single system, herein, we have studied self-aggregation of amide-functionalized surface-active ionic liquids (AFSAILs) with different head groups in the DMSO/water mixed system. The AFSAIL forms stimuli-responsive reversible micelle and vesicle configurations that coexist with three-dimensional (3D) network structures, the organogel in the DMSO/water mixed system. The self-assembly driving forces, self-organization patterns, network morphologies, and mechanical properties of these network structures have been investigated. With the proven biodegradability and biocompatibility, one can envisage these AFSAILs as the molecules with a new dimension of versatility.
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