Resistance degradation in barium strontium titanate thin films

被引:37
|
作者
Zafar, S [1 ]
Hradsky, B [1 ]
Gentile, D [1 ]
Chu, P [1 ]
Jones, RE [1 ]
Gillespie, S [1 ]
机构
[1] Motorola Inc, Mat Res & Strateg Technol, Austin, TX 78721 USA
关键词
D O I
10.1063/1.371305
中图分类号
O59 [应用物理学];
学科分类号
摘要
Experimental and modeling results for resistance degradation in thin Ba0.5Sr0.5TiO3 (BST) film capacitors with platinum (Pt) electrodes are reported. The main experimental results are as follows. Under a constant applied voltage, the current density is observed to increase with time until it reaches a maximum value. Once the maximum value is reached, the current density becomes constant with time. The barrier height at the BST/Pt (cathode) interface is observed to decrease after prolonged electrical stressing. The resistance degradation effect is observed to be reversible, particularly at elevated temperatures. Based on the experimental results, a quantitative model for resistance degradation is proposed. In this model, the increase in the current density is attributed to a decrease in the barrier height at the cathode and this decrease is assumed to have a stretched exponential dependence on time. Using experimentally determined parameters, the model calculates the current density as a function of time at various temperatures. The calculated results are verified and the model is shown to be self-consistent. Hence the model provides an accelerated method for determining the lifetime of thin BST films at the operating conditions for advanced memory applications. (C) 1999 American Institute of Physics. [S0021-8979(99)06217-9].
引用
收藏
页码:3890 / 3894
页数:5
相关论文
共 50 条
  • [31] Residual stress effects in doped barium strontium titanate thin films
    Nothwang, WD
    Cole, MW
    Hubbard, C
    Ngo, E
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2005, 152 (03) : F37 - F43
  • [32] Diffusion properties of point defects in barium strontium titanate thin films
    Morito, Kentaro
    Suzuki, Toshimasa
    Kishi, Hiroshi
    Sakaguchi, Isao
    Ohashi, Naok
    Haneda, Hajime
    IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 2007, 54 (12) : 2567 - 2573
  • [33] Thickness dependence of dielectric constant in barium strontium titanate thin films
    Panda, B
    Nigam, GD
    Ray, SK
    INDIAN JOURNAL OF PURE & APPLIED PHYSICS, 1999, 37 (04) : 318 - 320
  • [34] Poling Effect on Microstructure Properties of Barium Strontium Titanate Thin Films
    Yusof, H. Mohd
    Najamudin, S. H.
    Saif, Ala'eddin A.
    Poopalan, P.
    PROCEEDINGS 2015 2ND INTERNATIONAL CONFERENCE ON BIOMEDICAL ENGINEERING (ICOBE 2015), 2015,
  • [35] Thickness dependence of the properties of epitaxial barium strontium titanate thin films
    V. B. Shirokov
    Yu. I. Golovko
    V. M. Mukhortov
    Yu. I. Yuzyuk
    P. E. Janolin
    B. Dkhil
    Physics of the Solid State, 2015, 57 : 1529 - 1534
  • [36] Optical properties of barium strontium titanate (BST) ferroelectric thin films
    Bain, A. K.
    Jackson, T. J.
    Koutsonas, Yiannis
    Cryan, M.
    Yu, S.
    Hill, M.
    Varrazza, R.
    Rorison, J.
    Lancaster, M. J.
    FERROELECTRICS LETTERS SECTION, 2007, 34 (5-6) : 149 - 154
  • [37] Effect of stress on the dielectric properties of barium strontium titanate thin films
    T. J. Watson Research Cent, Yorktown Heights, United States
    Appl Phys Lett, 14 (2129-2131):
  • [38] Direct inkjet printing of composite thin barium strontium titanate films
    T. Kaydanova
    A. Miedaner
    C. Curtis
    J. Alleman
    J. D. Perkins
    D. S. Ginley
    L. Sengupta
    X. Zhang
    S. He
    L. Chiu
    Journal of Materials Research, 2003, 18 : 2820 - 2825
  • [39] Direct inkjet printing of composite thin barium strontium titanate films
    Kaydanova, T
    Miedaner, A
    Curtis, C
    Alleman, J
    Perkins, JD
    Ginley, DS
    Sengupta, L
    Zhang, X
    He, S
    Chiu, L
    JOURNAL OF MATERIALS RESEARCH, 2003, 18 (12) : 2820 - 2825
  • [40] Smart Sensing Multifunctionalities Based on Barium Strontium Titanate Thin Films
    Wang, Linghua
    Zhu, Minmin
    Shao, Yong
    Zhao, Yida
    Wei, Can
    Gao, Langfeng
    Bao, Yiping
    SENSORS, 2022, 22 (19)