Electron tunneling through alkanedithiol molecules - art. no. 603603

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dc.contributor.author Hoft, Rainer en_US
dc.contributor.author Liu, Jingquan en_US
dc.contributor.author Cortie, Michael en_US
dc.contributor.author Ford, Mike en_US
dc.contributor.editor Nicolau, DV en_US
dc.date.accessioned 2009-11-09T05:34:17Z
dc.date.available 2009-11-09T05:34:17Z
dc.date.issued 2006 en_US
dc.identifier 2006004204 en_US
dc.identifier.citation Hoft Rainer et al. 2006, 'Electron tunneling through alkanedithiol molecules - art. no. 603603', Spie-Int Society Optical Engineering, Bellingham, USA, pp. 3603-3603. en_US
dc.identifier.issn 0-8194-6067-2 en_US
dc.identifier.other E1 en_US
dc.identifier.uri http://hdl.handle.net/10453/2326
dc.description.abstract We report on first principles calculations of the tunneling current across n-alkanedithiol molecules (n = 4,6,8,10,12) sandwiched between two Au {111} electrodes. The conductance drops exponentially with increased chain length with decay parameter beta(n en_US
dc.publisher Spie-Int Society Optical Engineering en_US
dc.relation.isbasedon http://dx.doi.org/10.1117/12.638349 en_US
dc.rights © (2005) COPYRIGHT SPIE--The International Society for Optical Engineering.
dc.title Electron tunneling through alkanedithiol molecules - art. no. 603603 en_US
dc.parent Biomems And Nanotechnology Ii en_US
dc.journal.volume en_US
dc.journal.number en_US
dc.publocation Bellingham, USA en_US
dc.identifier.startpage 3603 en_US
dc.identifier.endpage 3603 en_US
dc.cauo.name SCI.Physics and Advanced Materials en_US
dc.conference Verified OK en_US
dc.conference.location Brisbane, AUSTRALIA en_US
dc.for 100700 en_US
dc.personcode 10203622 en_US
dc.personcode 040173 en_US
dc.personcode 020302 en_US
dc.personcode 020323 en_US
dc.percentage 100 en_US
dc.classification.name Nanotechnology en_US
dc.classification.type FOR-08 en_US
dc.custom Conference on BioMEMS and Nanotechnology II en_US
dc.date.activity 20051212 en_US
dc.location.activity Brisbane, AUSTRALIA en_US
dc.description.keywords electron tunneling, scanning tunneling spectroscopy, molecular electronics, self-assembled monolayer, molecular conductance en_US
dc.staffid 020323 en_US

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