Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods

With particular focus on zinc oxide (ZnO) nanorods to be incorporated into piezoelectric sensors for soft gripper application, this work attempts to investigate the effects of thermal annealing conditions on intrinsic defects and how oxygen vacancies can be manipulated to further improve piezorespon...

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Main Author: Ang, Jia Wen
Other Authors: Lee Pooi See
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2024
Subjects:
Online Access:https://hdl.handle.net/10356/176297
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1762972024-05-18T16:46:23Z Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods Ang, Jia Wen Lee Pooi See School of Materials Science and Engineering CREATE-SGSR CREATE-SGSR PSLee@ntu.edu.sg Engineering Piezoelectricity Nanorods With particular focus on zinc oxide (ZnO) nanorods to be incorporated into piezoelectric sensors for soft gripper application, this work attempts to investigate the effects of thermal annealing conditions on intrinsic defects and how oxygen vacancies can be manipulated to further improve piezoresponse of the nanorod arrays. Zinc oxide (ZnO) nanorods were prepared on fluorine-doped tin oxide (FTO) glass substrates via a two-step synthesis process to grow oriented nanorod arrays in the (002) preferred orientation. The samples are then subjected to different thermal annealing conditions in a quartz tube furnace. Subsequently, morphology and structure of the prepared samples were characterised using field-emission scanning electron microscopy (FESEM) and X-ray diffraction (XRD). Raman spectroscopy was employed to investigate the presence of oxygen vacancies in the different samples. Piezoelectric properties of the ZnO nanorods were determined via piezoresponse force microscopy (PFM). Obtained results demonstrated that increase in annealing temperature up to 300˚C in oxygen-rich ambient enhanced the piezoelectric and crystalline quality of ZnO nanorod arrays to a larger extent than in oxygen-deficit ambients. Raman spectra also revealed that concentration of oxygen vacancies is significantly reduced by increasing annealing temperature. Based on present findings, to obtain ZnO nanorods with enhanced piezoresponse, optimal annealing condition is oxygen-rich ambient at 300˚C, which is sufficiently high to induce significant improvement in properties and at the same time, sufficiently low to avoid possible substrate degradation. Bachelor's degree 2024-05-15T06:44:04Z 2024-05-15T06:44:04Z 2024 Final Year Project (FYP) Ang, J. W. (2024). Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/176297 https://hdl.handle.net/10356/176297 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering
Piezoelectricity
Nanorods
spellingShingle Engineering
Piezoelectricity
Nanorods
Ang, Jia Wen
Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods
description With particular focus on zinc oxide (ZnO) nanorods to be incorporated into piezoelectric sensors for soft gripper application, this work attempts to investigate the effects of thermal annealing conditions on intrinsic defects and how oxygen vacancies can be manipulated to further improve piezoresponse of the nanorod arrays. Zinc oxide (ZnO) nanorods were prepared on fluorine-doped tin oxide (FTO) glass substrates via a two-step synthesis process to grow oriented nanorod arrays in the (002) preferred orientation. The samples are then subjected to different thermal annealing conditions in a quartz tube furnace. Subsequently, morphology and structure of the prepared samples were characterised using field-emission scanning electron microscopy (FESEM) and X-ray diffraction (XRD). Raman spectroscopy was employed to investigate the presence of oxygen vacancies in the different samples. Piezoelectric properties of the ZnO nanorods were determined via piezoresponse force microscopy (PFM). Obtained results demonstrated that increase in annealing temperature up to 300˚C in oxygen-rich ambient enhanced the piezoelectric and crystalline quality of ZnO nanorod arrays to a larger extent than in oxygen-deficit ambients. Raman spectra also revealed that concentration of oxygen vacancies is significantly reduced by increasing annealing temperature. Based on present findings, to obtain ZnO nanorods with enhanced piezoresponse, optimal annealing condition is oxygen-rich ambient at 300˚C, which is sufficiently high to induce significant improvement in properties and at the same time, sufficiently low to avoid possible substrate degradation.
author2 Lee Pooi See
author_facet Lee Pooi See
Ang, Jia Wen
format Final Year Project
author Ang, Jia Wen
author_sort Ang, Jia Wen
title Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods
title_short Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods
title_full Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods
title_fullStr Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods
title_full_unstemmed Effect of thermal annealing conditions on piezoelectric response of ZnO nanorods
title_sort effect of thermal annealing conditions on piezoelectric response of zno nanorods
publisher Nanyang Technological University
publishDate 2024
url https://hdl.handle.net/10356/176297
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