Dataset

Energy Dissipation and Nanoscale Process Collection

University of South Australia
AsPr Rossen Sedev (Aggregated by) Dr Mihail Popescu (Aggregated by) LPrf John Ralston (Aggregated by)
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft.title=Energy Dissipation and Nanoscale Process Collection&rft.identifier= https://research.unisa.edu.au/metadatasystem/redbox/published/detail/762c41c854f26c2b3da8f865455bfbd7 &rft.publisher=University of South Australia&rft.description= Imaging by ToF-SIMS of a patterned OTHS-TiO2 coating on glass capillaries and slides.The inner surface of capillary samples, as well as flat glass slides subjected to the patterned coating were analysed. Mosaic images were collected to cover several millimetres of the surface, to investigate the resolution of the patterned bands. Region-of-interest spectra were collected from each of the observed bands so that surface chemistry information could be compared between areas. These results were used to help improve the patterned coating application. &rft.creator=Anonymous&rft.date=2013&rft_rights= Access to the collection may be subject to licence and privacy conditions. Requests for access can be made through the listed contact. &rft_subject=Surface Analysis&rft_subject=Patterned Coating&rft_subject=OTHS-Ti O2 &rft_subject=Concentrating Processes of Base Metal Ores (excl. Aluminium and Iron Ores)&rft_subject=First Stage Treatment of Ores and Minerals&rft_subject=Mineral Resources (excl. Energy Resources)&rft_subject=Energy Transformation Not Elsewhere Classified&rft_subject=Energy Transformation&rft_subject=Energy&rft_subject=Expanding Knowledge in the Physical Sciences&rft_subject=Expanding Knowledge&rft_subject=Expanding Knowledge&rft.type=dataset&rft.language=English Go to Data Provider

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Contact Information

john.denman@unisa.edu.au

Brief description

Imaging by ToF-SIMS of a patterned OTHS-TiO2 coating on glass capillaries and slides.The inner surface of capillary samples, as well as flat glass slides subjected to the patterned coating were analysed. Mosaic images were collected to cover several millimetres of the surface, to investigate the resolution of the patterned bands. Region-of-interest spectra were collected from each of the observed bands so that surface chemistry information could be compared between areas. These results were used to help improve the patterned coating application.

Identifiers
  • Local : https://research.unisa.edu.au/metadatasystem/redbox/published/detail/762c41c854f26c2b3da8f865455bfbd7