Please use this identifier to cite or link to this item: http://cmuir.cmu.ac.th/jspui/handle/6653943832/71727
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dc.contributor.authorAschariya Prathanen_US
dc.contributor.authorJongrak Sanglaoen_US
dc.contributor.authorTao Wangen_US
dc.contributor.authorChawalit Bhoomaneeen_US
dc.contributor.authorPipat Ruankhamen_US
dc.contributor.authorAtcharawon Gardchareonen_US
dc.contributor.authorDuangmanee Wongratanaphisanen_US
dc.date.accessioned2021-01-27T04:05:47Z-
dc.date.available2021-01-27T04:05:47Z-
dc.date.issued2020-12-01en_US
dc.identifier.issn20452322en_US
dc.identifier.other2-s2.0-85084786585en_US
dc.identifier.other10.1038/s41598-020-64510-6en_US
dc.identifier.urihttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85084786585&origin=inwarden_US
dc.identifier.urihttp://cmuir.cmu.ac.th/jspui/handle/6653943832/71727-
dc.description.abstract© 2020, The Author(s). Fabrication of uniform vertically-aligned titanium dioxide nanorods (TiO2 NRs) was achieved by hydrothermal growth on a fluorine-doped tin oxide (FTO) glass substrate. The substrate was coated by a TiO2 seed layer composed of titanium (IV) butoxide (TBO) as a precursor in an HCl solution. To reduce the amount of toxic substances used in this work, a minimal amount of HCl was used. On a larger scale, this method would require less precursor and therefore be a cost-savings. The aim of the present work is to achieve high crystalline orientations of TiO2 NRs for low quantities of both TBO precursor and HCl solutions. Results showed that the 0.7% TBO TiO2 NRs after 1.5 h of hydrothermal treatment exhibited the optimal crystalline orientation along [001] while the (002) plane is the dominant facet. The results demonstrate high transmittance of visible light and well-formed crystalline structures that offer a fast electron pathway along the length of the TiO2 NRs with less grain boundaries. Lastly, TiO2 NRs and their growth mechanism are discussed. This work offers a promising hydrothermal method for growing well-aligned TiO2 single-crystal NRs that can be employed in solar cell applications.en_US
dc.subjectMultidisciplinaryen_US
dc.titleControlled Structure and Growth Mechanism behind Hydrothermal Growth of TiO<inf>2</inf> Nanorodsen_US
dc.typeJournalen_US
article.title.sourcetitleScientific Reportsen_US
article.volume10en_US
article.stream.affiliationsWuhan University of Technologyen_US
article.stream.affiliationsChiang Mai Universityen_US
article.stream.affiliationsScienceen_US
Appears in Collections:CMUL: Journal Articles

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