Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC

The world’s energy needs has been increasing steeply since industrial revolution. The world economic is so conditioned on oil, but oil will slowly dry up. Continue increasing demand of energy will cause serious environment issues, particularly climate problem. And the lack of oil recourses will driv...

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主要作者: Sun, Hui Yuan.
其他作者: Sun Xiaowei
格式: Final Year Project
語言:English
出版: 2010
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在線閱讀:http://hdl.handle.net/10356/40208
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機構: Nanyang Technological University
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spelling sg-ntu-dr.10356-402082023-07-07T16:51:57Z Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC Sun, Hui Yuan. Sun Xiaowei School of Electrical and Electronic Engineering DRNTU::Engineering The world’s energy needs has been increasing steeply since industrial revolution. The world economic is so conditioned on oil, but oil will slowly dry up. Continue increasing demand of energy will cause serious environment issues, particularly climate problem. And the lack of oil recourses will drive electrical power to a higher price. “Keeping 2050 in mind” as asked by K.R. Sreenivasan, “where is this energy going to come from?” [1] One possible solution to energy crisis is to exploit the use of renewable energy especially solar energy. And for this reason, solar cell has been a hot research area recently. One type of solar cell is fabricated based on nanostructures as electrodes like nanorods, nanotube,and so on which extends the electrode surface area comparing to flat surface electrode. In addition, nanoparticles often exhibit unexpected visible properties because they are small enough to confine their electrons and produce quantum effects, surface Plasmon resonance and so on. These novel phenomenons are expected to bring breakthrough to conventional devices’ performance. DSSC is an example that applies nanoparticles working as electrodes in solar cell. ZnO nanostructures have attracted a lot of interests for two reasons. First, it owns excellent properties like large exciton binding energy(60 meV), high electromechanical coupling constant and resistivity to harsh environment. Second, variety nanostructures of ZnO can be fabricated through a simple, cheap and low temperature process, the low temperature sol-gel hydrothermal method. However ZnO nanostructures grown by hydrothermal method are reported to have considerable defects within bulk material and on surface and the efficiency of solar cells made with ZnO nanostructures as electrodes is very low. So in this project, we aimed to improve the crystalline quality and surface properties by annealing ZnO nanorods array. In my project, ZnO nanorods array was grow on FTO film which is coated on glass surface. Then distinct annealing treatments were applied to ZnO nanorods arrays and DSSC cells were assembled based on these substrates. Finally multi characteristics, like J-V testing, and analysis on efficiency vs morphology and efficiency vs annealing condition will be carried out. Bachelor of Engineering 2010-06-11T07:20:49Z 2010-06-11T07:20:49Z 2010 2010 Final Year Project (FYP) http://hdl.handle.net/10356/40208 en Nanyang Technological University 51 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Sun, Hui Yuan.
Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC
description The world’s energy needs has been increasing steeply since industrial revolution. The world economic is so conditioned on oil, but oil will slowly dry up. Continue increasing demand of energy will cause serious environment issues, particularly climate problem. And the lack of oil recourses will drive electrical power to a higher price. “Keeping 2050 in mind” as asked by K.R. Sreenivasan, “where is this energy going to come from?” [1] One possible solution to energy crisis is to exploit the use of renewable energy especially solar energy. And for this reason, solar cell has been a hot research area recently. One type of solar cell is fabricated based on nanostructures as electrodes like nanorods, nanotube,and so on which extends the electrode surface area comparing to flat surface electrode. In addition, nanoparticles often exhibit unexpected visible properties because they are small enough to confine their electrons and produce quantum effects, surface Plasmon resonance and so on. These novel phenomenons are expected to bring breakthrough to conventional devices’ performance. DSSC is an example that applies nanoparticles working as electrodes in solar cell. ZnO nanostructures have attracted a lot of interests for two reasons. First, it owns excellent properties like large exciton binding energy(60 meV), high electromechanical coupling constant and resistivity to harsh environment. Second, variety nanostructures of ZnO can be fabricated through a simple, cheap and low temperature process, the low temperature sol-gel hydrothermal method. However ZnO nanostructures grown by hydrothermal method are reported to have considerable defects within bulk material and on surface and the efficiency of solar cells made with ZnO nanostructures as electrodes is very low. So in this project, we aimed to improve the crystalline quality and surface properties by annealing ZnO nanorods array. In my project, ZnO nanorods array was grow on FTO film which is coated on glass surface. Then distinct annealing treatments were applied to ZnO nanorods arrays and DSSC cells were assembled based on these substrates. Finally multi characteristics, like J-V testing, and analysis on efficiency vs morphology and efficiency vs annealing condition will be carried out.
author2 Sun Xiaowei
author_facet Sun Xiaowei
Sun, Hui Yuan.
format Final Year Project
author Sun, Hui Yuan.
author_sort Sun, Hui Yuan.
title Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC
title_short Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC
title_full Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC
title_fullStr Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC
title_full_unstemmed Defects treatment on ZnO nanorods grown by hydrothermal method in application of DSSC
title_sort defects treatment on zno nanorods grown by hydrothermal method in application of dssc
publishDate 2010
url http://hdl.handle.net/10356/40208
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