DocumentCode
2276938
Title
Combined piezo-force microscopy and conductive atomic-force microscopy for investigating leakage current conduction and local domain structure of PbTiO3 thin films
Author
Lee, Hyun Ju ; Lee, Keun ; Shin, Yong Cheol ; Kim, Gun Hwan ; Hwang, Cheol Seong ; Hong, Jae Wan
Author_Institution
Seoul Nat. Univ., Seoul
fYear
2007
fDate
27-31 May 2007
Firstpage
367
Lastpage
369
Abstract
Local ferroelectric properties and leakage current behaviors of atomic-layer-deposited PbTiO3 (PTO) thin films on Ir electrode were investigated by piezo-force microscopy (PFM) and conductive atomic-force microscopy (CAFM). The as-grown PTO thin films were amorphous due to their low growth temperature (200degC). Post-deposition annealing (PDA) at 600degC for 30 min under 02 atmosphere using furnace crystallized the stoichiometric (Pb/Ti atomic ratio ~ 0.97) films into perovskite structure. The film morphology was critically dependent on the heating schedule during PDA; fast heating and cooling (< 5 min) resulted in a crystallized film with the rough and irregular morphology whereas the slow heating and cooling (> 60 min) resulted in a film with better morphology. The leakage current of the former case was much higher than that of the latter. The large leakage current adversely interferes with the polarization of the film during the PFM measurement. However, the local leakage current did not show any clear correlation with the local ferroelectric status of the grains and morpological changes.
Keywords
annealing; atomic force microscopy; electric domains; ferroelectric thin films; iridium; lead compounds; leakage currents; Ir; PbTiO3; conductive atomic-force microscopy; electrode; ferroelectric properties; ferroelectric status; film morphology; leakage current conduction; local domain structure; morpological changes; perovskite structure; piezo-force microscopy; polarization; post-deposition annealing; temperature 200 C; temperature 600 C; thin films; time 30 min; Conductive films; Cooling; Crystallization; Electrodes; Ferroelectric films; Ferroelectric materials; Heating; Leakage current; Microscopy; Morphology;
fLanguage
English
Publisher
ieee
Conference_Titel
Applications of Ferroelectrics, 2007. ISAF 2007. Sixteenth IEEE International Symposium on
Conference_Location
Nara
ISSN
1099-4734
Print_ISBN
978-1-4244-1334-8
Electronic_ISBN
1099-4734
Type
conf
DOI
10.1109/ISAF.2007.4393267
Filename
4393267
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