Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions

Over the years, recent advancements have provided new insights into the functionalisation and synthesis of graphene oxide -based materials for sample preparation applications, utilising deep eutectic solvents (DESs). The demand for efficient, selective, innovative, and simple sample preparation of c...

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Published in:MICROCHEMICAL JOURNAL
Main Authors: Ibukun, Aduloju Emmanuel; Yahaya, Noorfatimah; Mohamed, Ahmad Husaini; Semail, Nadhiratul-Farihin; Hamid, Muhammad Ariffuddin Abd; Zain, Nur Nadhirah Mohamad; Kamaruddin, Mohammad Anuar; Loh, Saw Hong; Kamaruzaman, Sazlinda
Format: Article
Language:English
Published: ELSEVIER 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001178133700001
author Ibukun
Aduloju Emmanuel; Yahaya
Noorfatimah; Mohamed
Ahmad Husaini; Semail
Nadhiratul-Farihin; Hamid
Muhammad Ariffuddin Abd; Zain
Nur Nadhirah Mohamad; Kamaruddin
Mohammad Anuar; Loh
Saw Hong; Kamaruzaman
Sazlinda
spellingShingle Ibukun
Aduloju Emmanuel; Yahaya
Noorfatimah; Mohamed
Ahmad Husaini; Semail
Nadhiratul-Farihin; Hamid
Muhammad Ariffuddin Abd; Zain
Nur Nadhirah Mohamad; Kamaruddin
Mohammad Anuar; Loh
Saw Hong; Kamaruzaman
Sazlinda
Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
Chemistry
author_facet Ibukun
Aduloju Emmanuel; Yahaya
Noorfatimah; Mohamed
Ahmad Husaini; Semail
Nadhiratul-Farihin; Hamid
Muhammad Ariffuddin Abd; Zain
Nur Nadhirah Mohamad; Kamaruddin
Mohammad Anuar; Loh
Saw Hong; Kamaruzaman
Sazlinda
author_sort Ibukun
spelling Ibukun, Aduloju Emmanuel; Yahaya, Noorfatimah; Mohamed, Ahmad Husaini; Semail, Nadhiratul-Farihin; Hamid, Muhammad Ariffuddin Abd; Zain, Nur Nadhirah Mohamad; Kamaruddin, Mohammad Anuar; Loh, Saw Hong; Kamaruzaman, Sazlinda
Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
MICROCHEMICAL JOURNAL
English
Article
Over the years, recent advancements have provided new insights into the functionalisation and synthesis of graphene oxide -based materials for sample preparation applications, utilising deep eutectic solvents (DESs). The demand for efficient, selective, innovative, and simple sample preparation of contaminants and pollutants from various matrices has rapidly focused on dispersive and magnetic solid -phase extraction. This study summarises the use of graphene oxide and reduced graphene materials in DES -based synthesis and functionalisation, along with their physicochemical characteristics and applications in dispersive and magnetic solid -phase extraction. The majority of DESs have demonstrated significant enhancements in the extraction of targeted analytes by increasing the effective surface area for active sites and introducing desired functionalities. Upon reviewing the existing literature, it was observed that DESs were functionalised either during or after the production of graphene materials. The findings highlight that dispersive and magnetic solid -phase extraction, incorporated with DES-functionalised graphene adsorbents, offer superior advantages for routine sample pretreatment of analytes, leading to enhanced analytical performance.
ELSEVIER
0026-265X
1095-9149
2024
199

10.1016/j.microc.2024.110111
Chemistry

WOS:001178133700001
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001178133700001
title Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
title_short Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
title_full Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
title_fullStr Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
title_full_unstemmed Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
title_sort Recent developments in synthesis and characterisation of graphene oxide modified with deep eutectic solvents for dispersive and magnetic solid-phase extractions
container_title MICROCHEMICAL JOURNAL
language English
format Article
description Over the years, recent advancements have provided new insights into the functionalisation and synthesis of graphene oxide -based materials for sample preparation applications, utilising deep eutectic solvents (DESs). The demand for efficient, selective, innovative, and simple sample preparation of contaminants and pollutants from various matrices has rapidly focused on dispersive and magnetic solid -phase extraction. This study summarises the use of graphene oxide and reduced graphene materials in DES -based synthesis and functionalisation, along with their physicochemical characteristics and applications in dispersive and magnetic solid -phase extraction. The majority of DESs have demonstrated significant enhancements in the extraction of targeted analytes by increasing the effective surface area for active sites and introducing desired functionalities. Upon reviewing the existing literature, it was observed that DESs were functionalised either during or after the production of graphene materials. The findings highlight that dispersive and magnetic solid -phase extraction, incorporated with DES-functionalised graphene adsorbents, offer superior advantages for routine sample pretreatment of analytes, leading to enhanced analytical performance.
publisher ELSEVIER
issn 0026-265X
1095-9149
publishDate 2024
container_volume 199
container_issue
doi_str_mv 10.1016/j.microc.2024.110111
topic Chemistry
topic_facet Chemistry
accesstype
id WOS:001178133700001
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001178133700001
record_format wos
collection Web of Science (WoS)
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