Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis

Carbon quantum dots (CQD) were successfully synthesized using microwave-assisted hydrothermal method using empty fruit bunch (EFB) biochar as the carbon precursor. Effect of temperature (60°C – 130°C), solvent concentration (0.1- 0.5 mole fraction of IPA) and reaction time (5 – 30 minutes) were inve...

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Main Author: Kamarol Zaman, Alif Syafiq
Format: Thesis
Language:English
Published: 2019
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Online Access:http://psasir.upm.edu.my/id/eprint/98088/1/ITMA%202020%2012%20IR.pdf
http://psasir.upm.edu.my/id/eprint/98088/
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Institution: Universiti Putra Malaysia
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spelling my.upm.eprints.980882022-07-18T23:37:34Z http://psasir.upm.edu.my/id/eprint/98088/ Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis Kamarol Zaman, Alif Syafiq Carbon quantum dots (CQD) were successfully synthesized using microwave-assisted hydrothermal method using empty fruit bunch (EFB) biochar as the carbon precursor. Effect of temperature (60°C – 130°C), solvent concentration (0.1- 0.5 mole fraction of IPA) and reaction time (5 – 30 minutes) were investigated on CQD yield (%). The optimum process gives the highest yield and it is about 15.22% at 100°C with 0.1 mole fraction and in just 5 minutes. Material characterisations confirm the formation of CQD where microscopy images showed an average size distribution of 4.5 nm. Chemical structure has shown the presence of oxygenic functional groups such as hydroxyl, carbonyl/carboxyl at 3270 cm-1 and 1640 cm-1 respectively. The presence of these oxygenic functional groups are also supported by X-ray Photoelectron Spectroscopy analysis where C–C/C=C (284.6 eV), C-O (285.5 eV), C=O (286.5 eV) and COOH (288.1 eV). To complement experimental data, density functional theory (DFT) calculations were carried out at 6-31G(d) basis set and a comparison of three exchange correlation functions such as B3LYP, CAM-B3LYP and wB97XD. These functionals are able to calculate the ground state molecular structure of CQD where the subsequent frequency analyses for each functionals give no imaginary frequencies. The highest occupied molecular orbital and lowest unoccupied molecular orbital (HOMO-LUMO) gap obtained from 6– 31G(d) with Becke’s three parameter with Lee–Yang–Parr (B3LYP) is 6.381 eV and is closer to experimental band gap of 3.2 eV compared to Coulomb attenuating method with Becke’s three parameter with Lee– Yang–Parr (CAM–B3LYP) and wB97XD. In conclusion, a facile preparation of CQD from EFB biochar was successfully obtained from microwave-assisted hydrothermal process. The process was efficient, rapid, cost-effective and eco-friendly. 2019-08 Thesis NonPeerReviewed text en http://psasir.upm.edu.my/id/eprint/98088/1/ITMA%202020%2012%20IR.pdf Kamarol Zaman, Alif Syafiq (2019) Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis. Masters thesis, Universiti Putra Malaysia. Quantum dots Electric conductivity
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
topic Quantum dots
Electric conductivity
spellingShingle Quantum dots
Electric conductivity
Kamarol Zaman, Alif Syafiq
Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis
description Carbon quantum dots (CQD) were successfully synthesized using microwave-assisted hydrothermal method using empty fruit bunch (EFB) biochar as the carbon precursor. Effect of temperature (60°C – 130°C), solvent concentration (0.1- 0.5 mole fraction of IPA) and reaction time (5 – 30 minutes) were investigated on CQD yield (%). The optimum process gives the highest yield and it is about 15.22% at 100°C with 0.1 mole fraction and in just 5 minutes. Material characterisations confirm the formation of CQD where microscopy images showed an average size distribution of 4.5 nm. Chemical structure has shown the presence of oxygenic functional groups such as hydroxyl, carbonyl/carboxyl at 3270 cm-1 and 1640 cm-1 respectively. The presence of these oxygenic functional groups are also supported by X-ray Photoelectron Spectroscopy analysis where C–C/C=C (284.6 eV), C-O (285.5 eV), C=O (286.5 eV) and COOH (288.1 eV). To complement experimental data, density functional theory (DFT) calculations were carried out at 6-31G(d) basis set and a comparison of three exchange correlation functions such as B3LYP, CAM-B3LYP and wB97XD. These functionals are able to calculate the ground state molecular structure of CQD where the subsequent frequency analyses for each functionals give no imaginary frequencies. The highest occupied molecular orbital and lowest unoccupied molecular orbital (HOMO-LUMO) gap obtained from 6– 31G(d) with Becke’s three parameter with Lee–Yang–Parr (B3LYP) is 6.381 eV and is closer to experimental band gap of 3.2 eV compared to Coulomb attenuating method with Becke’s three parameter with Lee– Yang–Parr (CAM–B3LYP) and wB97XD. In conclusion, a facile preparation of CQD from EFB biochar was successfully obtained from microwave-assisted hydrothermal process. The process was efficient, rapid, cost-effective and eco-friendly.
format Thesis
author Kamarol Zaman, Alif Syafiq
author_facet Kamarol Zaman, Alif Syafiq
author_sort Kamarol Zaman, Alif Syafiq
title Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis
title_short Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis
title_full Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis
title_fullStr Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis
title_full_unstemmed Facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis
title_sort facile preparation of carbon quantum dots from biochar via microwave–assisted hydrothermal synthesis
publishDate 2019
url http://psasir.upm.edu.my/id/eprint/98088/1/ITMA%202020%2012%20IR.pdf
http://psasir.upm.edu.my/id/eprint/98088/
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