Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation

The recent progress of graphene oxide (GO), it is considered as the most promising nano adsorbents for water purification. In this study, the adsorption potentiality of this nano material was increased by functionalization of graphene with chloroacetic acid (GO/CAA). The potentiality was evaluated b...

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Main Authors: Saddam Hossain, Md Sajjadur Rahman, Loknath Dhar, Shamshad B. Quraishi, Md Nurul Abser, Farzana Rahman, Mir Tamzid Rahman
Format: Article
Language:English
Published: Elsevier 2021-01-01
Series:Current Research in Green and Sustainable Chemistry
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666086521000424
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spelling doaj-d853ba0c06674116a1f6cc53ec7ed1792021-04-22T13:41:11ZengElsevierCurrent Research in Green and Sustainable Chemistry2666-08652021-01-014100095Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretationSaddam Hossain0Md Sajjadur Rahman1Loknath Dhar2Shamshad B. Quraishi3Md Nurul Abser4Farzana Rahman5Mir Tamzid Rahman6Department of Chemistry, Jahangirnagar University, Savar, Dhaka, 1342, BangladeshDepartment of Chemistry and Biochemistry, South Dakota State University, Brookings, SD, 57007, USADepartment of Chemistry, Jahangirnagar University, Savar, Dhaka, 1342, BangladeshChemistry Division, Atomic Energy Center, Dhaka, Bangladesh Atomic Energy Commission, BangladeshDepartment of Chemistry, Jahangirnagar University, Savar, Dhaka, 1342, BangladeshDepartment of General Educational Development, Daffodil International University, BangladeshDepartment of Chemistry, Jahangirnagar University, Savar, Dhaka, 1342, Bangladesh; Corresponding author.The recent progress of graphene oxide (GO), it is considered as the most promising nano adsorbents for water purification. In this study, the adsorption potentiality of this nano material was increased by functionalization of graphene with chloroacetic acid (GO/CAA). The potentiality was evaluated by applying GO and GO/CAA in the removal of lead (Pb) from synthetic waste water. The analyses of FTIR spectroscopy, X-ray diffraction patterns, and scanning electron microscope supported to the successful preparation of GO/CAA from GO. In case of adsorption of Pb (II) by GO and GO/CAA, Langmuir adsorption isotherm indicated more fit for describing the Pb (II) adsorption. According to the Langmuir adsorption isotherm, the maximum adsorption capacities (qe) of GO and GO/CAA were found 0.25 and 0.52 ​mol/g, respectively. The pseudo second order model displayed higher correlation and hence elucidates the reaction kinetics well with both GO and GO/CAA. Molecular level insights obtained from the molecular dynamics study proved that the studied GO shows excellent adsorption efficiency to the Pb2+ ions by the intermolecular interactions among the Pb cations and oxygen atoms of the GO surface, where anions of the lead compounds could help Pb2+ ions to form clusters around GO layers. Overall, this study suggests that the modification of GO exposed higher potentiality in the purification of Pb (II).http://www.sciencedirect.com/science/article/pii/S2666086521000424Graphene oxideLeadMolecular dynamicAdsorptionKinetics
collection DOAJ
language English
format Article
sources DOAJ
author Saddam Hossain
Md Sajjadur Rahman
Loknath Dhar
Shamshad B. Quraishi
Md Nurul Abser
Farzana Rahman
Mir Tamzid Rahman
spellingShingle Saddam Hossain
Md Sajjadur Rahman
Loknath Dhar
Shamshad B. Quraishi
Md Nurul Abser
Farzana Rahman
Mir Tamzid Rahman
Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation
Current Research in Green and Sustainable Chemistry
Graphene oxide
Lead
Molecular dynamic
Adsorption
Kinetics
author_facet Saddam Hossain
Md Sajjadur Rahman
Loknath Dhar
Shamshad B. Quraishi
Md Nurul Abser
Farzana Rahman
Mir Tamzid Rahman
author_sort Saddam Hossain
title Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation
title_short Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation
title_full Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation
title_fullStr Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation
title_full_unstemmed Increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation
title_sort increasing the potentiality of graphene oxide by chloroacetic acid for the adsorption of lead with molecular dynamic interpretation
publisher Elsevier
series Current Research in Green and Sustainable Chemistry
issn 2666-0865
publishDate 2021-01-01
description The recent progress of graphene oxide (GO), it is considered as the most promising nano adsorbents for water purification. In this study, the adsorption potentiality of this nano material was increased by functionalization of graphene with chloroacetic acid (GO/CAA). The potentiality was evaluated by applying GO and GO/CAA in the removal of lead (Pb) from synthetic waste water. The analyses of FTIR spectroscopy, X-ray diffraction patterns, and scanning electron microscope supported to the successful preparation of GO/CAA from GO. In case of adsorption of Pb (II) by GO and GO/CAA, Langmuir adsorption isotherm indicated more fit for describing the Pb (II) adsorption. According to the Langmuir adsorption isotherm, the maximum adsorption capacities (qe) of GO and GO/CAA were found 0.25 and 0.52 ​mol/g, respectively. The pseudo second order model displayed higher correlation and hence elucidates the reaction kinetics well with both GO and GO/CAA. Molecular level insights obtained from the molecular dynamics study proved that the studied GO shows excellent adsorption efficiency to the Pb2+ ions by the intermolecular interactions among the Pb cations and oxygen atoms of the GO surface, where anions of the lead compounds could help Pb2+ ions to form clusters around GO layers. Overall, this study suggests that the modification of GO exposed higher potentiality in the purification of Pb (II).
topic Graphene oxide
Lead
Molecular dynamic
Adsorption
Kinetics
url http://www.sciencedirect.com/science/article/pii/S2666086521000424
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