Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes

The demand for sustainable power supplies to power a large number of electronics is becoming increasingly significant with the rapid development of Internet of Things. Harvesting energy from nature such as tidal energy, wind energy and human mechanical energy is regarded as a solution to meet the de...

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Main Author: Jin, Zhuolin
Other Authors: Zhang Qing
Format: Thesis-Master by Coursework
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/157784
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1577842023-07-04T17:49:00Z Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes Jin, Zhuolin Zhang Qing School of Electrical and Electronic Engineering eqzhang@ntu.edu.sg Engineering::Electrical and electronic engineering::Semiconductors The demand for sustainable power supplies to power a large number of electronics is becoming increasingly significant with the rapid development of Internet of Things. Harvesting energy from nature such as tidal energy, wind energy and human mechanical energy is regarded as a solution to meet the demand for power supplies. The triboelectric generators have attracted numerous attentions recently for the reason that it provides another technique that can convert mechanical energy to electric energy. For the purpose of well apply to portable electronics, different types of electric generators developed from the triboelectric generators have been carried out. In this project, a tribovoltaic device with a metal probe sliding against doped semiconductors or solar cells which can generate direct current is studied. For the n-type silicon, the generated DC current flowed in the same direction with the built-in electric field between copper and the electrodes. For the p-type silicon, the generated DC current flowed in the opposite direction with the built-in electric field. The generated short-circuit currents from these electrodes were increased with the contact force. For the solar cell, the generated current did not depend on the contact force between the copper probe and solar cell, but the current flow direction was dependent on the Cu probe sliding directions. Master of Science (Electronics) 2022-05-13T05:11:07Z 2022-05-13T05:11:07Z 2022 Thesis-Master by Coursework Jin, Z. (2022). Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes. Master's thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/157784 https://hdl.handle.net/10356/157784 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::Electrical and electronic engineering::Semiconductors
spellingShingle Engineering::Electrical and electronic engineering::Semiconductors
Jin, Zhuolin
Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes
description The demand for sustainable power supplies to power a large number of electronics is becoming increasingly significant with the rapid development of Internet of Things. Harvesting energy from nature such as tidal energy, wind energy and human mechanical energy is regarded as a solution to meet the demand for power supplies. The triboelectric generators have attracted numerous attentions recently for the reason that it provides another technique that can convert mechanical energy to electric energy. For the purpose of well apply to portable electronics, different types of electric generators developed from the triboelectric generators have been carried out. In this project, a tribovoltaic device with a metal probe sliding against doped semiconductors or solar cells which can generate direct current is studied. For the n-type silicon, the generated DC current flowed in the same direction with the built-in electric field between copper and the electrodes. For the p-type silicon, the generated DC current flowed in the opposite direction with the built-in electric field. The generated short-circuit currents from these electrodes were increased with the contact force. For the solar cell, the generated current did not depend on the contact force between the copper probe and solar cell, but the current flow direction was dependent on the Cu probe sliding directions.
author2 Zhang Qing
author_facet Zhang Qing
Jin, Zhuolin
format Thesis-Master by Coursework
author Jin, Zhuolin
author_sort Jin, Zhuolin
title Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes
title_short Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes
title_full Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes
title_fullStr Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes
title_full_unstemmed Study of tribovoltaic effect when Cu electrode sliding on silicon electrodes
title_sort study of tribovoltaic effect when cu electrode sliding on silicon electrodes
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/157784
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