전기 열량 소자로의 응용을 위한 K(Ta0.70Nb0.30)O3/K(Ta0.55Nb0.45)O3 이종층 박막의 구조적, 전기적 특성Structural and Electrical Properties of K(Ta0.70Nb0.30)O3/K(Ta0.55Nb0.45)O3 Heterolayer Thin Films for Electrocaloric Devices
- Other Titles
- Structural and Electrical Properties of K(Ta0.70Nb0.30)O3/K(Ta0.55Nb0.45)O3 Heterolayer Thin Films for Electrocaloric Devices
- Authors
- 박병준; 육지수; 이삼행; 이명규; 박주석; 이성갑
- Issue Date
- May-2024
- Publisher
- 한국전기전자재료학회
- Keywords
- K(Ta0.70Nb0.30)O3/K(Ta0.55Nb0.45)O3 heterolayer films; Sol-gel method; Structural properties; Electrocaloric effect
- Citation
- 전기전자재료학회논문지, v.37, no.3, pp 297 - 303
- Pages
- 7
- Indexed
- KCI
- Journal Title
- 전기전자재료학회논문지
- Volume
- 37
- Number
- 3
- Start Page
- 297
- End Page
- 303
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/70467
- DOI
- 10.4313/JKEM.2024.37.3.9
- ISSN
- 1226-7945
2288-3258
- Abstract
- In this study, KTN heterolayer thin films were fabricated by alternately stacking films of K(Ta0.70Nb0.30)O3 and K(Ta0.55Nb0.45)O3 synthesized using the sol-gel method. The sintering temperature and time were 750℃ and 1 hour, respectively. All specimens exhibited a polycrystalline pseudo-cubic crystal structure, with a lattice constant of approximately 0.398 nm. The average grain size was around 130~150 nm, indicating relatively uniform sizes regardless of the number of coatings. The average thickness of a single-coated film was approximately 70 nm. The phase transition temperature of the KTN heterolayer films was found to be approximately 8~12℃. Moreover, the 6-coated KTN heterolayer film displayed an excellent dielectric constant of about 11,000. As the number of coatings increased, and consequently the film thickness, the remanent polarization increased, while the coercive field decreased. The 6-coated KTN heterolayer film exhibited a remanent polarization and coercive field of 11.4 μC/cm2 and 69.3 kV/cm at room temperature, respectively. ΔT showed the highest value at a temperature slightly above the Curie temperature, and for the 6-coated KTN heterolayer film, the ΔT and ΔT/ΔE were approximately 1.93 K and 0.128×10-6 K·m/V around 40℃, respectively.
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