Structural and sensing characteristics of Gd2Ti2O7, Er2TiO5 and Lu2Ti2O7 sensing membrane electrolyte-insulator-semiconductor for bio-sensing applications

被引:22
|
作者
Pan, Tung-Ming [1 ]
Liao, Pei-You [1 ]
Chang, Kung-Yuan [1 ]
Chi, Lifeng [2 ]
机构
[1] Chang Gung Univ, Dept Elect Engn, Tao Yuan 333, Taiwan
[2] Univ Munster, Inst Phys, D-48149 Munster, Germany
关键词
Electrolyte-insulator-semiconductor (EIS); Gd2Ti2O7; Er2TiO5; Lu2Ti2O7; Impedance spectroscopy; GATE DIELECTRICS; HYSTERESIS; OXIDE; CAPACITANCE; DEVICES; SENSOR; SI3N4; DRIFT;
D O I
10.1016/j.electacta.2012.10.099
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
This paper describes the structural and sensing characteristics of Gd2Ti2O7, Er2TiO5, and Lu2Ti2O7 sensing membranes deposited on Si substrates through reactive co-sputtering for electrolyte-insulator-semiconductor (EIS) pH sensors. In this work, the structural properties of Gd2Ti2O7, Er2TiO5, and Lu2Ti2O7 membranes were investigated by X-ray diffraction, atomic force microscopy and X-ray photoelectron spectroscopy. The observed structural properties were then correlated with the resulting pH sensing performances. The EIS device incorporating a Lu2Ti2O7 sensing film exhibited a higher sensitivity (59.32 mV pH(-1)), a larger drift rate (0.55 mV h(-1)), a higher hysteresis voltage (5 mV), and a larger hysteresis gap (similar to 70 mV) compared to those of the other sensing films. This result is attributed to the higher surface roughness and the formation of a thicker interfacial layer at the oxide-Si interface. Furthermore, the impedance effect of EIS sensors has been investigated using capacitance-voltage (C-V) method (frequency-dependent C-V curves). From the impedance spectroscopy analysis, we find that the diameter of a semicircle of an EIS sensor becomes smaller due to a gradual decrease in the bulk resistance of the device with degree of pH value. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:798 / 806
页数:9
相关论文
共 50 条
  • [21] Structural and Sensing Properties of High-k Lu2O3 Electrolyte-Insulator-Semiconductor pH Sensors
    Pan, Tung-Ming
    Lin, Chao-Wen
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2011, 158 (04) : J96 - J99
  • [22] Influence of grain growth on the structural properties of the nanocrystalline Gd2Ti2O7
    Kulriya, P. K.
    Yao, Tiankai
    Scott, Spencer Michael
    Nanda, Sonal
    Lian, Jie
    JOURNAL OF NUCLEAR MATERIALS, 2017, 487 : 373 - 379
  • [23] Displacement cascades in Gd2Ti2O7 and Gd2Zr2O7:: a molecular dynamics study
    Purton, JA
    Allan, NL
    JOURNAL OF MATERIALS CHEMISTRY, 2002, 12 (10) : 2923 - 2926
  • [24] Synthesis of Lu2Ti2O7 powders by molten salt method
    Li, Bao-rang
    Chang, Hui-bin
    Liu, Dong-yu
    Yuan, Xiao-na
    MATERIALS CHEMISTRY AND PHYSICS, 2011, 130 (1-2) : 755 - 759
  • [25] SELF-RADIATION DAMAGE IN GD2TI2O7
    WEBER, WJ
    WALD, JW
    MATZKE, H
    MATERIALS LETTERS, 1985, 3 (04) : 173 - 180
  • [26] ION-BEAM MODIFICATION OF GD2TI2O7
    WEBER, WJ
    HESS, NJ
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 1993, 80-1 : 1245 - 1248
  • [27] Czochralski growth of Gd2Ti2O7 single crystals
    Guo, F. Y.
    Zhang, W. H.
    Ruan, M.
    Kang, J. B.
    Chen, J. Z.
    JOURNAL OF CRYSTAL GROWTH, 2014, 402 : 94 - 98
  • [28] Preparation and characterization of Gd2Ti2O7 by microwave method
    Tang, Peisong
    Zhou, Ying
    Ye, Haishao
    Cao, Feng
    Li, Bin
    INTEGRATED FERROELECTRICS, 2016, 171 (01) : 87 - 92
  • [29] Adiabatic demagnetization of a pyrochlore antiferromagnet Gd2Ti2O7
    Sosin, SS
    Prozorova, LA
    Smirnov, AI
    Golov, AI
    Berkutov, IB
    Petrenko, OA
    Balakrishnan, G
    Zhitomirsky, ME
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2005, 290 : 709 - 711
  • [30] Magnetic resonance in the pyrochlore antiferromagnet Gd2Ti2O7
    Sosin, S. S.
    Smirnov, A. I.
    Prozorova, L. A.
    Balakrishnan, G.
    Zhitomirsky, M. E.
    PHYSICAL REVIEW B, 2006, 73 (21)