Greening industrial applications with magnetic-based deep eutectic solvents: A promising future

The field of green technology is evolving rapidly to address new industrial challenges, and deep eutectic solvents (DESs) have emerged as a potential alternative to traditional organic compounds and ionic liquids. Among their main classes, magnetic DESs (MagDESs) have gained significant attention du...

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Published in:Journal of Industrial and Engineering Chemistry
Main Author: Zainal-Abidin M.H.; Hayyan M.; Matmin J.; Al-Fakih A.M.; Jamaluddin N.; Wan Mahmood W.M.A.; Abdul Wahab R.; Abdullah F.
Format: Review
Language:English
Published: Korean Society of Industrial Engineering Chemistry 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85158086653&doi=10.1016%2fj.jiec.2023.04.011&partnerID=40&md5=a489f2d450e2c7647462af6fe6f933cd
id 2-s2.0-85158086653
spelling 2-s2.0-85158086653
Zainal-Abidin M.H.; Hayyan M.; Matmin J.; Al-Fakih A.M.; Jamaluddin N.; Wan Mahmood W.M.A.; Abdul Wahab R.; Abdullah F.
Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
2023
Journal of Industrial and Engineering Chemistry
124

10.1016/j.jiec.2023.04.011
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85158086653&doi=10.1016%2fj.jiec.2023.04.011&partnerID=40&md5=a489f2d450e2c7647462af6fe6f933cd
The field of green technology is evolving rapidly to address new industrial challenges, and deep eutectic solvents (DESs) have emerged as a potential alternative to traditional organic compounds and ionic liquids. Among their main classes, magnetic DESs (MagDESs) have gained significant attention due to their unique magnetic properties resulting from the presence of magnetic ions in the solvent. The unique magnetic properties of MagDESs, combined with their stability and compatibility, make them suitable for various applications, including magnetic separation and purification. The ease of separation of MagDESs from their respective mixtures via the application of an external magnetic field distinguishes them as a desirable solution, enabling quick extraction and easy collection without centrifugation. Moreover, DESs can serve to endow magnetic materials with new functionalities for a wide range of applications. Utilizing DESs enables the functionalization of magnetic materials without the use of volatile organic solvents or extended processing periods. MagDESs are expected to be used in the extraction of various compounds, but there are some limitations that must be considered, such as compatibility issues, recovery difficulty, and also long-term stability and sustainability of MagDESs in different environments and applications. Further research and development are necessary to fully understand and optimize the benefits and limitations of MagDESs. © 2023 The Korean Society of Industrial and Engineering Chemistry
Korean Society of Industrial Engineering Chemistry
1226086X
English
Review

author Zainal-Abidin M.H.; Hayyan M.; Matmin J.; Al-Fakih A.M.; Jamaluddin N.; Wan Mahmood W.M.A.; Abdul Wahab R.; Abdullah F.
spellingShingle Zainal-Abidin M.H.; Hayyan M.; Matmin J.; Al-Fakih A.M.; Jamaluddin N.; Wan Mahmood W.M.A.; Abdul Wahab R.; Abdullah F.
Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
author_facet Zainal-Abidin M.H.; Hayyan M.; Matmin J.; Al-Fakih A.M.; Jamaluddin N.; Wan Mahmood W.M.A.; Abdul Wahab R.; Abdullah F.
author_sort Zainal-Abidin M.H.; Hayyan M.; Matmin J.; Al-Fakih A.M.; Jamaluddin N.; Wan Mahmood W.M.A.; Abdul Wahab R.; Abdullah F.
title Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
title_short Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
title_full Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
title_fullStr Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
title_full_unstemmed Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
title_sort Greening industrial applications with magnetic-based deep eutectic solvents: A promising future
publishDate 2023
container_title Journal of Industrial and Engineering Chemistry
container_volume 124
container_issue
doi_str_mv 10.1016/j.jiec.2023.04.011
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85158086653&doi=10.1016%2fj.jiec.2023.04.011&partnerID=40&md5=a489f2d450e2c7647462af6fe6f933cd
description The field of green technology is evolving rapidly to address new industrial challenges, and deep eutectic solvents (DESs) have emerged as a potential alternative to traditional organic compounds and ionic liquids. Among their main classes, magnetic DESs (MagDESs) have gained significant attention due to their unique magnetic properties resulting from the presence of magnetic ions in the solvent. The unique magnetic properties of MagDESs, combined with their stability and compatibility, make them suitable for various applications, including magnetic separation and purification. The ease of separation of MagDESs from their respective mixtures via the application of an external magnetic field distinguishes them as a desirable solution, enabling quick extraction and easy collection without centrifugation. Moreover, DESs can serve to endow magnetic materials with new functionalities for a wide range of applications. Utilizing DESs enables the functionalization of magnetic materials without the use of volatile organic solvents or extended processing periods. MagDESs are expected to be used in the extraction of various compounds, but there are some limitations that must be considered, such as compatibility issues, recovery difficulty, and also long-term stability and sustainability of MagDESs in different environments and applications. Further research and development are necessary to fully understand and optimize the benefits and limitations of MagDESs. © 2023 The Korean Society of Industrial and Engineering Chemistry
publisher Korean Society of Industrial Engineering Chemistry
issn 1226086X
language English
format Review
accesstype
record_format scopus
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