Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent

Functional surfaces and interfaces play a dominant role in advancing physical and chemical properties exploitable for various applications. Herein, a unique material architecture, viz. foam-like three-dimensional (3D) graphene on nickel foam has been used as a substrate to grow iron oxide (Fe3O4) –...

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Main Authors: Ong, Chong Cheen, Rajan, Jose, Mohamed Shuaib, Mohamed Saheed
Format: Article
Language:English
Published: Elsevier 2020
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/28128/1/Phase%20transformed%20iron%20oxide%20%E2%80%93%20iron%20%28oxy%29%20hydroxide%20composite%20.pdf
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author Ong, Chong Cheen
Rajan, Jose
Mohamed Shuaib, Mohamed Saheed
author_facet Ong, Chong Cheen
Rajan, Jose
Mohamed Shuaib, Mohamed Saheed
author_sort Ong, Chong Cheen
collection UMP
description Functional surfaces and interfaces play a dominant role in advancing physical and chemical properties exploitable for various applications. Herein, a unique material architecture, viz. foam-like three-dimensional (3D) graphene on nickel foam has been used as a substrate to grow iron oxide (Fe3O4) – iron (oxy) hydroxide (FeOOH) nanocomposites with the dandelion-like (labelled as iron nanoflorets) structure. The 3D graphene and the iron nanoflorets have been grown by chemical vapour deposition and electrochemical deposition, respectively. The composite phase is shown to be vital in providing the necessary binding sites for electrostatic interaction for adsorption process in chemical engineering processes. A detailed Raman spectroscopy and X-ray photoelectron spectroscopy analyses reveal the phase changes of FeOOH from lepidocrocite to goethite on the graphene foam substrate. This transformation of lepidocrocite to its more stable polymorph goethite is assisted by the Fe2+ ions in a ferrous sulphate solution. The usefulness of hybrid iron nanoflorets as an adsorbent is demonstrated through adsorption of Congo red dye; adsorption capacity as high as ~1553 mg g−1 is achieved. The adsorbent is easily recovered by direct lifting due to its sturdy structure, which is an added advantage as the recovery of nanomaterials after adsorption from water remains a great challenge. Experiments suggest that the adsorption of Congo red is found to follow pseudo-first-order kinetics for the first 60 min and followed by pseudo-second-order kinetics. The adsorption isotherm is found to fit both Langmuir and Freundlich isotherms due to the presence of multiple active sites. The present material system is expected to further advance the industrial wastewater remediation.
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spelling UMPir281282020-05-05T07:17:51Z http://umpir.ump.edu.my/id/eprint/28128/ Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent Ong, Chong Cheen Rajan, Jose Mohamed Shuaib, Mohamed Saheed TP Chemical technology Functional surfaces and interfaces play a dominant role in advancing physical and chemical properties exploitable for various applications. Herein, a unique material architecture, viz. foam-like three-dimensional (3D) graphene on nickel foam has been used as a substrate to grow iron oxide (Fe3O4) – iron (oxy) hydroxide (FeOOH) nanocomposites with the dandelion-like (labelled as iron nanoflorets) structure. The 3D graphene and the iron nanoflorets have been grown by chemical vapour deposition and electrochemical deposition, respectively. The composite phase is shown to be vital in providing the necessary binding sites for electrostatic interaction for adsorption process in chemical engineering processes. A detailed Raman spectroscopy and X-ray photoelectron spectroscopy analyses reveal the phase changes of FeOOH from lepidocrocite to goethite on the graphene foam substrate. This transformation of lepidocrocite to its more stable polymorph goethite is assisted by the Fe2+ ions in a ferrous sulphate solution. The usefulness of hybrid iron nanoflorets as an adsorbent is demonstrated through adsorption of Congo red dye; adsorption capacity as high as ~1553 mg g−1 is achieved. The adsorbent is easily recovered by direct lifting due to its sturdy structure, which is an added advantage as the recovery of nanomaterials after adsorption from water remains a great challenge. Experiments suggest that the adsorption of Congo red is found to follow pseudo-first-order kinetics for the first 60 min and followed by pseudo-second-order kinetics. The adsorption isotherm is found to fit both Langmuir and Freundlich isotherms due to the presence of multiple active sites. The present material system is expected to further advance the industrial wastewater remediation. Elsevier 2020-05-15 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/28128/1/Phase%20transformed%20iron%20oxide%20%E2%80%93%20iron%20%28oxy%29%20hydroxide%20composite%20.pdf Ong, Chong Cheen and Rajan, Jose and Mohamed Shuaib, Mohamed Saheed (2020) Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent. Chemical Engineering Journal, 388 (124306). ISSN 1385-8947. (Published) https://doi.org/10.1016/j.cej.2020.124306 https://doi.org/10.1016/j.cej.2020.124306
spellingShingle TP Chemical technology
Ong, Chong Cheen
Rajan, Jose
Mohamed Shuaib, Mohamed Saheed
Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent
title Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent
title_full Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent
title_fullStr Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent
title_full_unstemmed Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent
title_short Phase transformed iron oxide – iron (oxy) hydroxide composite nanoflorets grown on foam-like graphene as a high performing adsorbent
title_sort phase transformed iron oxide iron oxy hydroxide composite nanoflorets grown on foam like graphene as a high performing adsorbent
topic TP Chemical technology
url http://umpir.ump.edu.my/id/eprint/28128/1/Phase%20transformed%20iron%20oxide%20%E2%80%93%20iron%20%28oxy%29%20hydroxide%20composite%20.pdf
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AT rajanjose phasetransformedironoxideironoxyhydroxidecompositenanofloretsgrownonfoamlikegrapheneasahighperformingadsorbent
AT mohamedshuaibmohamedsaheed phasetransformedironoxideironoxyhydroxidecompositenanofloretsgrownonfoamlikegrapheneasahighperformingadsorbent