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Work Function of Vanadium Dioxide Thin Films Across the Metal-Insulator Transition and the Role of Surface Nonstoichiometry

Authors
Ko, C (Ko, Changhyun)Yang, Z (Yang, Zheng)Ramanathan, S (Ramanathan, Shr
Issue Date
Sep-2011
Publisher
AMER CHEMICAL SOC
Citation
ACS APPLIED MATERIALS INTERFACES, v.3, no.9, pp 3396 - 3401
Pages
6
Journal Title
ACS APPLIED MATERIALS INTERFACES
Volume
3
Number
9
Start Page
3396
End Page
3401
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/147727
DOI
10.1021/am2006299
ISSN
1944-8244
1944-8252
Abstract
Vanadium dioxide (VO2) undergoes a sharp metal-insulator transition (MIT) in the vicinity of room temperature and there is great interest in exploiting this effect in novel electronic and photonic devices. We have measured the work function of vanadium dioxide thin films across the phase transition using variable temperature Kelvin force microscopy (KFM). The work function is estimated to be similar to 5.15 eV in the insulating phase and increases by similar to 0.15 eV across the MIT. We further show that the work function change upon the phase transition is highly sensitive to near-surface stoichiometry studied by X-ray photoelectron spectroscopy. This change in work function is distinct from bulk resistance-versus temperature trends commonly used to evaluate synthesis protocols for such vanadium oxide films and optimize stoichiometry. The results are pertinent to understanding fundamental electronic properties of vanadium oxide as well as charge injection phenomena in solid-state devices incorporating complex oxides containing multivalence cations.
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첨단소재·전자융합공학부 (신소재물리전공)
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