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Item
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Fabrication of Titanium Dioxide Nanotubes Array For Photoanode in Mesoscopic Solar Cells
http://hdl.handle.net/20.500.12678/0000000906
http://hdl.handle.net/20.500.12678/0000000906264006f0-f7c9-4617-b45c-10ee6b65761c
777375c9-b9c7-4097-9de2-5bb71d30f7b8
Name / File | License | Actions |
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Publication type | ||||||
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Journal article | ||||||
Upload type | ||||||
Publication | ||||||
Title | ||||||
Title | Fabrication of Titanium Dioxide Nanotubes Array For Photoanode in Mesoscopic Solar Cells | |||||
Language | en | |||||
Publication date | 2016 | |||||
Authors | ||||||
Min Min Thein | ||||||
Min Khant Ko | ||||||
Hlaing Min | ||||||
Nyein Wint Lwin | ||||||
Than Zaw Oo | ||||||
Description | ||||||
One dimensional (1D) nanostructures have been attracting the research interest and have many potential applications including mesoscopic solar cells. In this work, 1D titanium dioxide (TiO2) nanotubes array have been fabricated by the electrochemical anodization of Ti foils in electrolyte. Focus was placed on the morphology and size control of TiO2 nanotubes by varying fluoride content in electrolyte (0.3-0.6 Wt%). Fluoride contents of 0.4 and 0.5 Wt% are optimum for production of well-defined nanotubes array with uniform size distribution (tube diameter of 100 - 140 nm). It is also observed that higher the fluoride concentration, the larger is the anodization current across the sample. The tube morphology and size are strongly sensitive to the fluoride content in electrolyte. |
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Keywords | ||||||
Titanium dioxide | ||||||
Identifier | http://umoar.mu.edu.mm/handle/123456789/96 | |||||
Journal articles | ||||||
Conference papaers | ||||||
Books/reports/chapters | ||||||
Thesis/dissertations |