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A critical overview of MXenes adsorption behavior toward heavy metals.
Othman, Zakarya; Mackey, Hamish R; Mahmoud, Khaled A.
Affiliation
  • Othman Z; Qatar Environment and Energy Research Institute (QEERI), Hamad Bin Khalifa University, Qatar Foundation, P.O. Box 34110, Doha, Qatar; Division of Sustainable Development, College of Science and Engineering, Hamad Bin Khalifa University, Qatar Foundation, Doha, Qatar.
  • Mackey HR; Division of Sustainable Development, College of Science and Engineering, Hamad Bin Khalifa University, Qatar Foundation, Doha, Qatar.
  • Mahmoud KA; Qatar Environment and Energy Research Institute (QEERI), Hamad Bin Khalifa University, Qatar Foundation, P.O. Box 34110, Doha, Qatar. Electronic address: kmahmoud@hbku.edu.qa.
Chemosphere ; 295: 133849, 2022 May.
Article in En | MEDLINE | ID: mdl-35124080
ABSTRACT
In recent years, tremendous interest has been generated in MXenes as a fast-growing and diversified family of two-dimensional (2D) materials with a wide range of potential uses. MXenes exhibit many unique structural and physicochemical properties that make them particularly attractive as adsorbents for removing heavy metals from aqueous media, including a large surface area, abundant surface terminations, electron-richness, and hydrophilic nature. In light of the adsorption capabilities of MXenes at the ever-increasing rate of expansion, this review investigates the recent computational predictions for the adsorption capabilities of MXenes and the effect of synthesis of different MXene on their remediation behavior toward heavy metals. The influence of MXene engineering strategies such as alkalization, acidification, and incorporation into organic and inorganic hosts on their surface properties and adsorption capacity is compared to provide critical insights for designing effective MXene adsorbents. Additionally, the review discusses MXenes' adsorption mechanisms, the effect of coexisting ions on MXenes' selectivity, the regeneration of exhausted MXenes, and provides an overview of MXenes' stability and biocompatibility to demonstrate their potentiality for wastewater remediation. Finally, the review identifies current flaws and offers recommendations for further research.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Water Purification / Metals, Heavy Language: En Journal: Chemosphere Year: 2022 Document type: Article Affiliation country: Qatar

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Water Purification / Metals, Heavy Language: En Journal: Chemosphere Year: 2022 Document type: Article Affiliation country: Qatar