A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection
Here, we proposed a rapid sonochemical in situ co-precipitation approach to prepare Fe3O4@cellulose nanocrystal (MCNC) nanocomposites. Differed from conventionaly method, the proposed in-situ co-precipitation reaction was performed under atmospheric condition without N2 purging to yield the MCNC. Th...
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Wiley
2018
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author | Low, Liang Ee Tey, Beng Ti Ong, Boon Hoong Tang, Siah Ying |
author_facet | Low, Liang Ee Tey, Beng Ti Ong, Boon Hoong Tang, Siah Ying |
author_sort | Low, Liang Ee |
collection | UM |
description | Here, we proposed a rapid sonochemical in situ co-precipitation approach to prepare Fe3O4@cellulose nanocrystal (MCNC) nanocomposites. Differed from conventionaly method, the proposed in-situ co-precipitation reaction was performed under atmospheric condition without N2 purging to yield the MCNC. The results from FTIR analysis confirmed the formation of MCNC through the chemical interaction between the Fe ions of Fe3O4 nanoparticles (MNP) with the surface hydroxyl groups of CNC. The absence of typical Fe2O3 Raman spectral peak (730 cm−1) indicated no occurrence of oxidation of MNP to undesired maghemite. Based on TGA results, the MNP loading on the MCNC composites was found to be 6 wt% higher than those produced under typical N2 protection, giving rise to a higher magnetivity. Results revealed that the use of ultrasound (US) horn in place of conventional mechanical stirrer led to the production of the radical species that accelerated the nucleation, growth and dispersibility of MNPs on CNC fibres, which thus shortened the reaction times to 5 min. The findings suggest that the proposed sonochemical synthesis without inert N2 purging could be an alternative facile and efficient approach to fabricate well-dispersed MCNC nanocomposites that hold great potential for biomedical applications. |
first_indexed | 2024-03-06T05:54:01Z |
format | Article |
id | um.eprints-21390 |
institution | Universiti Malaya |
last_indexed | 2024-03-06T05:54:01Z |
publishDate | 2018 |
publisher | Wiley |
record_format | dspace |
spelling | um.eprints-213902019-05-29T04:17:10Z http://eprints.um.edu.my/21390/ A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection Low, Liang Ee Tey, Beng Ti Ong, Boon Hoong Tang, Siah Ying TP Chemical technology Here, we proposed a rapid sonochemical in situ co-precipitation approach to prepare Fe3O4@cellulose nanocrystal (MCNC) nanocomposites. Differed from conventionaly method, the proposed in-situ co-precipitation reaction was performed under atmospheric condition without N2 purging to yield the MCNC. The results from FTIR analysis confirmed the formation of MCNC through the chemical interaction between the Fe ions of Fe3O4 nanoparticles (MNP) with the surface hydroxyl groups of CNC. The absence of typical Fe2O3 Raman spectral peak (730 cm−1) indicated no occurrence of oxidation of MNP to undesired maghemite. Based on TGA results, the MNP loading on the MCNC composites was found to be 6 wt% higher than those produced under typical N2 protection, giving rise to a higher magnetivity. Results revealed that the use of ultrasound (US) horn in place of conventional mechanical stirrer led to the production of the radical species that accelerated the nucleation, growth and dispersibility of MNPs on CNC fibres, which thus shortened the reaction times to 5 min. The findings suggest that the proposed sonochemical synthesis without inert N2 purging could be an alternative facile and efficient approach to fabricate well-dispersed MCNC nanocomposites that hold great potential for biomedical applications. Wiley 2018 Article PeerReviewed Low, Liang Ee and Tey, Beng Ti and Ong, Boon Hoong and Tang, Siah Ying (2018) A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection. Asia-Pacific Journal of Chemical Engineering, 13 (4). e2209. ISSN 1932-2135, DOI https://doi.org/10.1002/apj.2209 <https://doi.org/10.1002/apj.2209>. https://doi.org/10.1002/apj.2209 doi:10.1002/apj.2209 |
spellingShingle | TP Chemical technology Low, Liang Ee Tey, Beng Ti Ong, Boon Hoong Tang, Siah Ying A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection |
title | A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection |
title_full | A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection |
title_fullStr | A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection |
title_full_unstemmed | A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection |
title_short | A facile and rapid sonochemical synthesis of monodispersed Fe3 O4 @cellulose nanocrystal nanocomposites without inert gas protection |
title_sort | facile and rapid sonochemical synthesis of monodispersed fe3 o4 cellulose nanocrystal nanocomposites without inert gas protection |
topic | TP Chemical technology |
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