Non-diffusive behavior of aluminum and yttrium dopants in ZrO2/Al2O3 and ZrO2/Y2O3 bilayer thin films

被引:0
|
作者
Seo, Haengha
Shin, Jonghoon
Park, Han Sol
Kim, Tae Kyun
Paik, Heewon
Song, Haewon
Hwang, Cheol Seong [1 ]
机构
[1] Seoul Natl Univ, Dept Mat Sci & Engn, Seoul 08826, South Korea
关键词
D O I
10.1039/d4tc04917a
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study investigates the diffusive and non-diffusive behaviors of Al and Y dopants in ZrO2/Al2O3 and ZrO2/Y(2)O(3 )stacked thin films grownviaatomic layer deposition (ALD), focusing on their interaction withthe film's crystallization and grain growth. Contrary to the conventional diffusion theory, this workreveals that the diffusion in these nano-scale thin films is strongly influenced by the formation ofthrough-grain structures rather than concentration gradients. Various thin film stacks analyzed bygrazing incidence X-ray diffraction confirm this phenomenon. In the bilayer configurations, the Al and Ydopant layers do not diffuse into the adjacent ZrO(2 )lattice since they do not necessarily interfere withthe continuous grain growth of the ZrO2 layer. However, when the dopant layers are embedded withinthe ZrO2, which disrupt ZrO(2 )grain growth at the insertion site, they must diffuse away to form thethrough-grains and thus lower the grain boundary energy. These findings indicate that the primarydriving force for the Al and Y dopant diffusion in ZrO2thin films is lowering the grain boundary energy,not the concentration gradient. In contrast, thicker (40.3 nm) Al-O layers maintain structural integrityand inhibit through-grain formation, resulting in no Al diffusion. These results offer insights forimplementing dopant layers in various thin film applications.
引用
收藏
页码:6257 / 6266
页数:10
相关论文
共 50 条
  • [21] Nanophase decomposition in plasma sprayed ZrO2(Y2O3)/Al2O3 coatings
    Liu, FD
    Cosandey, F
    Zhou, XZ
    Kear, BH
    CERAMIC NANOMATERIALS AND NANOTECHNOLOGY II, 2004, 148 : 91 - 100
  • [22] DIFFUSION OF MN IN ZRO2(Y2O3)
    LAU, SK
    SINGHAL, SC
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1984, 131 (08) : C287 - C287
  • [23] Yttria stabilized zirconia solid electrolyte surface modification with ZrO2, Y2O3, and ZrO2 + 9 mol % Y2O3 films
    L. A. Dunyushkina
    A. I. Vshivkova
    A. A. Pankratov
    B. D. Antonov
    V. P. Gorelov
    Russian Journal of Electrochemistry, 2010, 46 : 767 - 773
  • [24] Microstructural design of ZrO2–Y2O3–CeO2–Al2O3 materials
    E. V. Dudnik
    A. V. Shevchenko
    A. K. Ruban
    V. P. Red’ko
    L. M. Lopato
    Powder Metallurgy and Metal Ceramics, 2011, 49 : 528 - 536
  • [25] Liquid-Phase Synthesis and Study of Mesoporous Aerogels, Xerogels, and Nanopowders in the ZrO2–Y2O3–CeO2 and ZrO2–Y2O3–Al2O3 Systems
    N. Yu. Fedorenko
    M. V. Kalinina
    S. V. Myakin
    T. V. Khamova
    L. N. Efimova
    O. A. Shilova
    Inorganic Materials: Applied Research, 2022, 13 : 1005 - 1011
  • [26] Microlayered bioimplants based on ZrO2−Y2O3−CeO2−Al2O3
    E. V. Dudnik
    A. V. Shevchenko
    A. K. Ruban
    V. V. Kurenkova
    L. M. Lopato
    Powder Metallurgy and Metal Ceramics, 2009, 48 : 73 - 76
  • [27] STRUCTURE FORMATION AND MECHANICAL-BEHAVIOR OF AL2O3/ZRO2(Y2O3) DISPERSION CERAMICS
    BISCHOFF, S
    MICHALOWSKY, L
    WERNER, G
    PIPPEL, E
    WOLTERSDORF, J
    CERAMICS INTERNATIONAL, 1990, 16 (02) : 121 - 127
  • [28] 等离子喷涂制备Al2O3,ZrO2,Al2O3/ZrO2和ZrO2/Al2O3涂层的腐蚀性能(英文)
    SSATHISH
    MGEETHA
    Transactions of Nonferrous Metals Society of China, 2016, 26 (05) : 1336 - 1344
  • [29] Characterization of ZrO2 and (ZrO2)X(Al2O3)1-X thin films on Si substrates: effect of the Al2O3 component
    Vitanov, P.
    Harizanova, A.
    Ivanova, T.
    18TH INTERNATIONAL SUMMER SCHOOL ON VACUUM, ELECTRON AND ION TECHNOLOGIES (VEIT2013), 2014, 514
  • [30] Effect of Al2O3 on the properties of nanocrystalline ZrO2 + 3 mol % Y2O3 powder
    E. V. Dudnik
    A. V. Shevchenko
    A. K. Ruban
    V. P. Red’ko
    L. M. Lopato
    Inorganic Materials, 2010, 46 : 172 - 176