Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy

Titanium oxide nanoparticles were fabricated using the laser ablation technique in the carbon quantum dots aqueous solution. The ablation time and the particle size were in the range of 2 min to 10 min, and 21.46 nm to 16.07 nm, respectively. The fingerprint peaks and the particle shape in spherical...

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Main Authors: Sadrolhosseini, A. R., Beygisangchin, M., Shafie, S., Rashid, S. A., Nezakati, Hossein *
Format: Article
Published: IOP 2021
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Online Access:http://eprints.sunway.edu.my/1973/
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author Sadrolhosseini, A. R.
Beygisangchin, M.
Shafie, S.
Rashid, S. A.
Nezakati, Hossein *
author_facet Sadrolhosseini, A. R.
Beygisangchin, M.
Shafie, S.
Rashid, S. A.
Nezakati, Hossein *
author_sort Sadrolhosseini, A. R.
building SU Institutional Repository
collection Online Access
description Titanium oxide nanoparticles were fabricated using the laser ablation technique in the carbon quantum dots aqueous solution. The ablation time and the particle size were in the range of 2 min to 10 min, and 21.46 nm to 16.07 nm, respectively. The fingerprint peaks and the particle shape in spherical form were obtained from Fourier transform infrared spectrum and transmission electron microscopy, respectively. The optical properties were tested using a UV–visible spectrometer, so the bandgap was obtained in the range of 3.44 eV to 3.7 eV. The prepared sample was used to detect the sugar and the sensitivity of the sample for the detection of glucose is greater than other sugar. The limit of detection is 0.01 ppm.
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spelling sunway-19732022-03-09T03:00:51Z http://eprints.sunway.edu.my/1973/ Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy Sadrolhosseini, A. R. Beygisangchin, M. Shafie, S. Rashid, S. A. Nezakati, Hossein * Q Science (General) Titanium oxide nanoparticles were fabricated using the laser ablation technique in the carbon quantum dots aqueous solution. The ablation time and the particle size were in the range of 2 min to 10 min, and 21.46 nm to 16.07 nm, respectively. The fingerprint peaks and the particle shape in spherical form were obtained from Fourier transform infrared spectrum and transmission electron microscopy, respectively. The optical properties were tested using a UV–visible spectrometer, so the bandgap was obtained in the range of 3.44 eV to 3.7 eV. The prepared sample was used to detect the sugar and the sensitivity of the sample for the detection of glucose is greater than other sugar. The limit of detection is 0.01 ppm. IOP 2021-10 Article PeerReviewed Sadrolhosseini, A. R. and Beygisangchin, M. and Shafie, S. and Rashid, S. A. and Nezakati, Hossein * (2021) Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy. Materials Research Express, 8 (10). p. 105003. ISSN 2053-1591 http://doi.org/10.1088/2053-1591/abdf0f doi:10.1088/2053-1591/abdf0f
spellingShingle Q Science (General)
Sadrolhosseini, A. R.
Beygisangchin, M.
Shafie, S.
Rashid, S. A.
Nezakati, Hossein *
Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy
title Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy
title_full Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy
title_fullStr Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy
title_full_unstemmed Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy
title_short Laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy
title_sort laser ablated titanium oxide nanoparticles in carbon quantum dots solution for detection of sugar using fluorescence spectroscopy
topic Q Science (General)
url http://eprints.sunway.edu.my/1973/
http://eprints.sunway.edu.my/1973/
http://eprints.sunway.edu.my/1973/