Modulation of rare-earth diffusion for tailoring diverse MLCC application requirements

  • Lee, Kyung Joo
  • Lee, Jae Won
  • Lee, Changgeon
  • Kim, Minju
  • Gwon, Ohhun
  • 외 7명
Citations

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14
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15

초록

This study demonstrates that the low shell-forming temperatures of Mg in powdered form can effectively control Dy diffusion into BaTiO3. For Dy pre-coated BaTiO3, the insulation resistance is higher due to an increased shell thickness compared to Mg pre-coated BaTiO3. However, the thermal activation energy and ohmic conduction slope exhibit comparable values for both Dy and Mg pre-coated BaTiO3. Moreover, the high resistance and low dielectric permittivity observed in Dy pre-coated BaTiO3 are attributed to B-site substitution of BaTiO3 by the significant Dy dopant content. In contrast, the high coercive field and low resistance for Mg pre-coated BaTiO3 result from Dy aggregation caused by inhibited Dy diffusion. This study offers valuable insights into optimizing rare-earth element diffusion strategies to satisfy diverse application requirements in multilayer ceramic capacitors.

키워드

Rare EarthDiffusionCore-shell structureMultilayer ceramic capacitorsINSULATION RESISTANCE DEGRADATIONDIELECTRIC-PROPERTIESBATIO3IMPEDANCEBEHAVIOROXIDEDY
제목
Modulation of rare-earth diffusion for tailoring diverse MLCC application requirements
저자
Lee, Kyung JooLee, Jae WonLee, ChanggeonKim, MinjuGwon, OhhunSon, SeungwooKang, Byung SungChoi, Woo-JinJo, WookYoon, Seok-HyunPark, YunjungChun, Jinsung
DOI
10.1016/j.jeurceramsoc.2025.117326
발행일
2025-08
유형
Article
저널명
Journal of the European Ceramic Society
45
10