Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach
Zirconium-based metal-organic gels (Zr-MOG) was introduced to overcome the drawbacks such as macroshaping and poor hydrostability of as-synthesized metal-organic frameworks in microcrystalline powder in industrial applications. Zirconium nitrate oxyhydrate and dicarboxylic acid were initially used a...
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my.um.eprints.341512022-06-20T07:20:52Z http://eprints.um.edu.my/34151/ Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach Bahari, Anis Muneerah Shaiful Othman, Siti Zubaidah Fadli, Mohammad Faizulizwan Mohamad Zulkifli, Mohd Zul Amzar Biyamin, Saidatul Akmal Islam, Mohammad Aminul Aspanut, Zarina Amin, Nowshad Misran, Halina QC Physics QD Chemistry TK Electrical engineering. Electronics Nuclear engineering Zirconium-based metal-organic gels (Zr-MOG) was introduced to overcome the drawbacks such as macroshaping and poor hydrostability of as-synthesized metal-organic frameworks in microcrystalline powder in industrial applications. Zirconium nitrate oxyhydrate and dicarboxylic acid were initially used as organic ligands to form a soft supramolecular structure in a sol-gel like processing method. Amorphous Zr-MOG were successfully synthesized without chloride ion and toxic modulators for the first time in an attempt to a sustainable and green approach. The estimated as well as observed pore size was at ca. 5 nm with a disordered wormhole-like structure analogous to mesoporous silica materials. The agitation method, aging duration and temperature were highly dependent factors for the formation of amorphous Zr-MOG xerogel in the absence of chloride ions and toxic organic solvents. The evidences suggested that simple and quick washing with ethanol of the obtained gel with aging in between as the key factor to successful formation at room temperature analogous to that of siliceous inorganic materials. X-ray photoelectron spectroscopy (XPS) spectra indicated that the Zr atoms and organic linker bonding were intact, forming an amorphous metal-organic gel network. The deconvolution of O1s spectra resulted in three peaks at 531.9 eV, 530 eV and 529 eV attributable to Zr-O-C, Zr-O-Zr and Zr-O bonds energy, respectively. The presence of Zr-O-C peak suggested successful formation of metal and organic moieties in ZrMOG. In addition, the amorphous gel network was intact as evidenced in the presence of Zr-O-C peak in assynthesized, dried gel. Elsevier 2021-12 Article PeerReviewed Bahari, Anis Muneerah Shaiful and Othman, Siti Zubaidah and Fadli, Mohammad Faizulizwan Mohamad and Zulkifli, Mohd Zul Amzar and Biyamin, Saidatul Akmal and Islam, Mohammad Aminul and Aspanut, Zarina and Amin, Nowshad and Misran, Halina (2021) Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach. Surfaces and Interfaces, 27. ISSN 2468-0230, DOI https://doi.org/10.1016/j.surfin.2021.101469 <https://doi.org/10.1016/j.surfin.2021.101469>. 10.1016/j.surfin.2021.101469 |
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QC Physics QD Chemistry TK Electrical engineering. Electronics Nuclear engineering Bahari, Anis Muneerah Shaiful Othman, Siti Zubaidah Fadli, Mohammad Faizulizwan Mohamad Zulkifli, Mohd Zul Amzar Biyamin, Saidatul Akmal Islam, Mohammad Aminul Aspanut, Zarina Amin, Nowshad Misran, Halina Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach |
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Zirconium-based metal-organic gels (Zr-MOG) was introduced to overcome the drawbacks such as macroshaping and poor hydrostability of as-synthesized metal-organic frameworks in microcrystalline powder in industrial applications. Zirconium nitrate oxyhydrate and dicarboxylic acid were initially used as organic ligands to form a soft supramolecular structure in a sol-gel like processing method. Amorphous Zr-MOG were successfully synthesized without chloride ion and toxic modulators for the first time in an attempt to a sustainable and green approach. The estimated as well as observed pore size was at ca. 5 nm with a disordered wormhole-like structure analogous to mesoporous silica materials. The agitation method, aging duration and temperature were highly dependent factors for the formation of amorphous Zr-MOG xerogel in the absence of chloride ions and toxic organic solvents. The evidences suggested that simple and quick washing with ethanol of the obtained gel with aging in between as the key factor to successful formation at room temperature analogous to that of siliceous inorganic materials. X-ray photoelectron spectroscopy (XPS) spectra indicated that the Zr atoms and organic linker bonding were intact, forming an amorphous metal-organic gel network. The deconvolution of O1s spectra resulted in three peaks at 531.9 eV, 530 eV and 529 eV attributable to Zr-O-C, Zr-O-Zr and Zr-O bonds energy, respectively. The presence of Zr-O-C peak suggested successful formation of metal and organic moieties in ZrMOG. In addition, the amorphous gel network was intact as evidenced in the presence of Zr-O-C peak in assynthesized, dried gel. |
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Article |
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Bahari, Anis Muneerah Shaiful Othman, Siti Zubaidah Fadli, Mohammad Faizulizwan Mohamad Zulkifli, Mohd Zul Amzar Biyamin, Saidatul Akmal Islam, Mohammad Aminul Aspanut, Zarina Amin, Nowshad Misran, Halina |
author_facet |
Bahari, Anis Muneerah Shaiful Othman, Siti Zubaidah Fadli, Mohammad Faizulizwan Mohamad Zulkifli, Mohd Zul Amzar Biyamin, Saidatul Akmal Islam, Mohammad Aminul Aspanut, Zarina Amin, Nowshad Misran, Halina |
author_sort |
Bahari, Anis Muneerah Shaiful |
title |
Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach |
title_short |
Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach |
title_full |
Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach |
title_fullStr |
Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach |
title_full_unstemmed |
Facile synthesis of Zr-based metal-organic gel (Zr-MOG) using ``green'' sol-gel approach |
title_sort |
facile synthesis of zr-based metal-organic gel (zr-mog) using ``green'' sol-gel approach |
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Elsevier |
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2021 |
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http://eprints.um.edu.my/34151/ |
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1738510712253186048 |
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13.211869 |