Biocompatible functionalisation of nanoclays for improved environmental remediation

Among the wide range of materials used for remediating environmental contaminants, modified and functionalised nanoclays show particular promise as advanced sorbents, improved dispersants, or biodegradation enhancers. However, many chemically modified nanoclay materials are incompatible with living...

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Veröffentlicht in:Chemical Society reviews 2019-07, Vol.48 (14), p.374-377
Hauptverfasser: Biswas, Bhabananda, Warr, Laurence N, Hilder, Emily F, Goswami, Nirmal, Rahman, Mohammad M, Churchman, Jock G, Vasilev, Krasimir, Pan, Gang, Naidu, Ravi
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container_end_page 377
container_issue 14
container_start_page 374
container_title Chemical Society reviews
container_volume 48
creator Biswas, Bhabananda
Warr, Laurence N
Hilder, Emily F
Goswami, Nirmal
Rahman, Mohammad M
Churchman, Jock G
Vasilev, Krasimir
Pan, Gang
Naidu, Ravi
description Among the wide range of materials used for remediating environmental contaminants, modified and functionalised nanoclays show particular promise as advanced sorbents, improved dispersants, or biodegradation enhancers. However, many chemically modified nanoclay materials are incompatible with living organisms when they are used in natural systems with detrimental implications for ecosystem recovery. Here we critically review the pros and cons of functionalised nanoclays and provide new perspectives on the synthesis of environmentally friendly varieties. Particular focus is given to finding alternatives to conventional surfactants used in modified nanoclay products, and to exploring strategies in synthesising nanoclay-supported metal and metal oxide nanoparticles. A large number of promising nanoclay-based sorbents are yet to satisfy environmental biocompatibility in situ but opportunities are there to tailor them to produce "biocompatible" or regenerative/reusable materials. This review presents a summary of modified nanoclays and new perspective of producing biocompatibly functionalised nanoclays for environmental remediation.
doi_str_mv 10.1039/c8cs01019f
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Biocompatibility
Biodegradation
Contaminants
Dispersants
Nanoparticles
Organic chemistry
Sorbents
title Biocompatible functionalisation of nanoclays for improved environmental remediation
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