Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.]
Various procedures for producing high-quality zinc oxide (ZnO) nanowires (ZnO NWs) have been developed. Nevertheless, most of it rely on harsh circumstances such as high temperature, high pressure, costly materials, and complicated procedures. As a result, this study introduces an alternative ultras...
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2023
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my.uitm.ir.864502023-11-01T23:08:47Z https://ir.uitm.edu.my/id/eprint/86450/ Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.] mjcet Bakri, Mohamad Dzulfiqar Malek, Mohd Firdaus Mohammad, Maryam Mohamed, Ruziana Hisam, Rosdiyana Abdullah, Mohd Hanapiah Fadzilah Suhaimi, Mohd Husairi Tetsuo, Soga Mahmood, Mohamad Rusop TK Electrical engineering. Electronics. Nuclear engineering Various procedures for producing high-quality zinc oxide (ZnO) nanowires (ZnO NWs) have been developed. Nevertheless, most of it rely on harsh circumstances such as high temperature, high pressure, costly materials, and complicated procedures. As a result, this study introduces an alternative ultrasonic-assisted immersion technique due to its many advantages such as low cost, ease of handling, and low energy consumption, as well as studying the effect of different precursors on the morphological, structural, and optical properties of the ZnO NWs, thus supporting and consolidating previous discoveries and providing a clearer understanding of the mechanism of ZnO formation. The most promising desirable features have been demonstrated for chromium doped ZnO NWs. Field emission scanning electron microscopy (FESEM) was used to examine the surface morphology of the samples, and x-ray diffraction (XRD) and UV-visible (UV-Vis) were utilised to investigate the structural and optical characteristics of the ZnO NWs. It was discovered that inserting Cr as a dopant for ZnO enhanced ZnO NWs by preventing quick electron-hole recombination, revealing it as the best dopant. This id due to reduced band gap (3.231 eV), relax strain (−0.2383%) and stress (0.560 GPa), and near zero porosities. Universiti Teknologi MARA Shah Alam 2023-10 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/86450/1/86450.pdf Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.]. (2023) Malaysian Journal of Chemical Engineering and Technology (MJCET) <https://ir.uitm.edu.my/view/publication/Malaysian_Journal_of_Chemical_Engineering_and_Technology_=28MJCET=29/>, 6 (2): 7. pp. 98-106. ISSN 2682-8588 |
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TK Electrical engineering. Electronics. Nuclear engineering Bakri, Mohamad Dzulfiqar Malek, Mohd Firdaus Mohammad, Maryam Mohamed, Ruziana Hisam, Rosdiyana Abdullah, Mohd Hanapiah Fadzilah Suhaimi, Mohd Husairi Tetsuo, Soga Mahmood, Mohamad Rusop Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.] |
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Various procedures for producing high-quality zinc oxide (ZnO) nanowires (ZnO NWs) have been developed. Nevertheless, most of it rely on harsh circumstances such as high temperature, high pressure, costly materials, and complicated procedures. As a result, this study introduces an alternative ultrasonic-assisted immersion technique due to its many advantages such as low cost, ease of handling, and low energy consumption, as well as studying the effect of different precursors on the morphological, structural, and optical properties of the ZnO NWs, thus supporting and consolidating previous discoveries and providing a clearer understanding of the mechanism of ZnO formation. The most promising desirable features have been demonstrated for chromium doped ZnO NWs. Field emission scanning electron microscopy (FESEM) was used to examine the surface morphology of the samples, and x-ray diffraction (XRD) and UV-visible (UV-Vis) were utilised to investigate the structural and optical characteristics of the ZnO NWs. It was discovered that inserting Cr as a dopant for ZnO enhanced ZnO NWs by preventing quick electron-hole recombination, revealing it as the best dopant. This id due to reduced band gap (3.231 eV), relax strain (−0.2383%) and stress (0.560 GPa), and near zero porosities. |
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Article |
author |
Bakri, Mohamad Dzulfiqar Malek, Mohd Firdaus Mohammad, Maryam Mohamed, Ruziana Hisam, Rosdiyana Abdullah, Mohd Hanapiah Fadzilah Suhaimi, Mohd Husairi Tetsuo, Soga Mahmood, Mohamad Rusop |
author_facet |
Bakri, Mohamad Dzulfiqar Malek, Mohd Firdaus Mohammad, Maryam Mohamed, Ruziana Hisam, Rosdiyana Abdullah, Mohd Hanapiah Fadzilah Suhaimi, Mohd Husairi Tetsuo, Soga Mahmood, Mohamad Rusop |
author_sort |
Bakri, Mohamad Dzulfiqar |
title |
Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.] |
title_short |
Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.] |
title_full |
Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.] |
title_fullStr |
Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.] |
title_full_unstemmed |
Effect of doping on the structural properties of ZnO nanowires synthesised by ultrasonic-assisted immersion technique / Mohamad Dzulfiqar Bakri ... [et al.] |
title_sort |
effect of doping on the structural properties of zno nanowires synthesised by ultrasonic-assisted immersion technique / mohamad dzulfiqar bakri ... [et al.] |
publisher |
Universiti Teknologi MARA Shah Alam |
publishDate |
2023 |
url |
https://ir.uitm.edu.my/id/eprint/86450/1/86450.pdf https://ir.uitm.edu.my/id/eprint/86450/ |
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1781709363364233216 |
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13.209306 |