DocumentCode :
3179269
Title :
Elastic and inelastic electron tunneling in doped gold wire nanojunctions
Author :
Balasubramanian, P. ; Deepika, G.T. ; Sen, Arunabha
Author_Institution :
SRM Res. Inst., SRM Univ., Chennai, India
fYear :
2013
fDate :
24-26 July 2013
Firstpage :
279
Lastpage :
281
Abstract :
Control and design of thermodynamically stable nanojunctions constitute to pose major challenges in realizing truly nanoelectronic devices as complex hybridization of atomic orbitals, especially at the junction edges, often determines the tunability of electronic conductance along with its thermopower. Using first-principles nonequilibrium analysis, we probe here how the doping of transition metal ions may control the charge transport in Au-chain nanojunctions. We find that electronic conductance of a pure gold-chain break junction is reduced considerably once it is thiolated on either side of the contact regions. Additional doping of Ni or Co ions, however, try to compensate it by yielding lower junction resistance while Mn ions behave differently as selective dopant. Onset of phonon modes further shed light on how the inelastic electron tunneling spectra can sense the chemical signature of various doped nanojunctions.
Keywords :
ab initio calculations; cobalt; doping; electrical contacts; gold; nanoelectronics; nanowires; nickel; tunnelling; Au; Au:Co; Au:Ni; atomic orbital complex hybridization; charge transport; cobalt ion doping; contact regions; doped gold wire nanojunctions; elastic electron tunneling; electronic conductance tunability; first principles nonequilibrium analysis; gold chain nanojunctions; inelastic electron tunneling; junction edges; junction resistance; nanoelectronic devices; nickel ion doping; pure gold chain break junction; thermodynamically stable nanojunction control; thermodynamically stable nanojunction design; thermopower; transition metal ion doping; Chemicals; Gold; Junctions; Manganese; Electronic transport; Gold wire nanojunctions; Inelastic electron tunneling; Non-equilibrium Green´s function;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Nanomaterials and Emerging Engineering Technologies (ICANMEET), 2013 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4799-1377-0
Type :
conf
DOI :
10.1109/ICANMEET.2013.6609291
Filename :
6609291
Link To Document :
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