Synthesis and high gas sensitivity of tin oxide nanotubes

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dc.contributor.author Wang, G
dc.contributor.author Park, JS
dc.contributor.author Park, MS
dc.contributor.author Gou, X
dc.date.accessioned 2012-03-02T06:03:04Z
dc.date.issued 2008-01
dc.identifier.citation Sensors and Actuators B: Chemical, 2008, 131 (1), pp. 313 - 317
dc.identifier.issn 0925-4005
dc.identifier.other C1UNSUBMIT en_US
dc.identifier.uri http://hdl.handle.net/10453/17429
dc.description.abstract Semiconductor tin oxide (SnO2) nanotubes have been synthesised in bulk quantities using a solgel template (AAO membrane) synthetic technique. The morphology and crystal structure of SnO2 nanotubes were characterised by a field emission scanning electron microscope (FESEM) and a transmission electron microscope (TEM). The as-prepared SnO2 nanotubes are polycrystalline with an outer diameter of 200 nm, an inner diameter of about 150 nm and a length extending to tens of micrometers. SnO2 nanotube sensors exhibited high sensitivity towards ethanol gas.
dc.publisher Elsevier Science
dc.relation.isbasedon 10.1016/j.snb.2007.11.032
dc.title Synthesis and high gas sensitivity of tin oxide nanotubes
dc.type Journal Article
dc.description.version Published
dc.parent Sensors and Actuators B: Chemical
dc.journal.volume 1
dc.journal.volume 131
dc.journal.number 1 en_US
dc.publocation Switzerland en_US
dc.identifier.startpage 313 en_US
dc.identifier.endpage 317 en_US
dc.cauo.name SCI.Faculty of Science en_US
dc.conference Verified OK en_US
dc.conference 19th IEEE International Workshops on Enabling Technologies - Infrastructure for Collaborative Enterprises (WETICE 2010)
dc.for 0912 Materials Engineering
dc.for 0306 Physical Chemistry (Incl. Structural)
dc.personcode 109499
dc.percentage 67 en_US
dc.classification.name Physical Chemistry (incl. Structural en_US
dc.classification.type FOR-08 en_US
dc.edition en_US
dc.custom en_US
dc.date.activity en_US
dc.date.activity 2010-06-28
dc.location.activity en_US
dc.location.activity Larissa, GREECE
dc.description.keywords Tin oxides
dc.description.keywords Tin oxides
dc.description.keywords Nanotubes
dc.description.keywords Nanotubes
dc.description.keywords Solgel
dc.description.keywords Solgel
dc.description.keywords Gas-sensors
dc.description.keywords Gas-sensors
dc.description.keywords Nanocrystallites
dc.description.keywords Nanocrystallites
pubs.embargo.period Not known
pubs.organisational-group /University of Technology Sydney
pubs.organisational-group /University of Technology Sydney/Faculty of Science
pubs.organisational-group /University of Technology Sydney/Strength - Materials and Technology for Energy Efficiency
pubs.organisational-group /University of Technology Sydney/Strength - Materials and Technology for Energy Efficiency
utslib.copyright.status Closed Access
utslib.copyright.date 2015-04-15 12:17:09.805752+10
utslib.copyright.date 2015-04-15 12:17:09.805752+10
pubs.consider-herdc false
pubs.consider-herdc false
utslib.collection.history School of Chemistry and Forensic Science (ID: 339)
utslib.collection.history School of Chemistry and Forensic Science (ID: 339)
utslib.collection.history Closed (ID: 3)
utslib.collection.history Closed (ID: 3)


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