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Updated: Jul 12, 2026

Preparation of Binary and Ternary Deep Eutectic Systems
Published on: October 31, 2019
Smart deep eutectic solvents in analytical chemistry: From responsive materials to advanced membrane-based sample
Dhandapani Ramesh1, Gracia Saral Gladison1, Udayakumar Mani1
1Green Separation Engineering Laboratory, SASTRA Deemed University, Thanjavur, Tamil Nadu, India.
Smart deep eutectic solvents (smart DES) offer dynamic control in analytical chemistry, enabling enhanced selectivity and reusability. These switchable solvents represent a promising direction for next-generation analytical platforms.
Area of Science:
- Analytical Chemistry
- Materials Science
- Supramolecular Chemistry
Background:
- Deep eutectic solvents (DES) are increasingly used as green alternatives in analytical chemistry.
- Smart DES are a novel class of designer solvents with stimulus-responsive properties.
- Conventional DES lack dynamic control, limiting their application scope.
Purpose of the Study:
- To review the classification, stimulus-response mechanisms, and analytical applications of switchable DES.
- To highlight membrane-based analytical formats utilizing smart DES.
- To evaluate challenges and future directions for smart DES in analytical chemistry.
Main Methods:
- Critical discussion of smart DES classification and stimulus-response mechanisms.
- Review of applications in liquid-phase microextraction, chromatography, electrophoresis, and sensors.
- Evaluation of challenges including viscosity, stability, and standardization.
Main Results:
- Smart DES enable dynamic control over extraction, separation, and detection, enhancing selectivity and reusability.
- Applications span microextraction of pollutants and biomolecules, tunable chromatography phases, and responsive sensors.
- Membrane-based formats like switchable supported liquid membranes show significant potential.
Conclusions:
- Smart DES transition analytical chemistry from static solvents to dynamic functional materials.
- Further research is needed for rational design, integration into automated systems, and exploration of supramolecular/chiral variants.
- Smart DES offer a promising pathway for next-generation analytical chemistry with improved performance and automation capabilities.
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