Limiting current type yttria-stabilized zirconia thin-film oxygen sensor with spiral Ta2O5 gas diffusion layer

被引:25
作者
Akasaka, Shunsuke [1 ,2 ]
Amamoto, Yurina [1 ]
Yuji, Hiroyuki [1 ]
Kanno, Isaku [2 ]
机构
[1] ROHM Co Ltd, Ukyo Ku, 21 Saiin Mizosaki Cho, Kyoto 6158585, Japan
[2] Kobe Univ, Dept Mech Engn, Nada Ku, 1-1 Rokkodai Cho, Kobe, Hyogo 6578501, Japan
关键词
Yttria-stabilized zirconium; Limiting current; Oxygen sensor; Thin film; Rotational oblique evaporation; SENSING CHARACTERISTICS; HUMIDITY SENSOR; MICROHEATER; FABRICATION; PLATINUM; HYDROGEN; WATER;
D O I
10.1016/j.snb.2020.128932
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
In this study, we demonstrated a limiting current-type yttria-stabilized zirconia thin-film oxygen sensor with a gas diffusion layer composed of porous Pt and spiral Ta2O5, which were deposited via sputtering and rotational oblique evaporation, respectively. The rate of the oxygen gas diffusion through the porous Pt and spiral Ta2O5 films defined the limiting current level of the oxygen sensor. When evaporation angle was between 70 degrees and 84 degrees, the relative density of the spiral Ta2O5 was between 0.72 and 0.37. The microstructure of the spiral Ta2O5 film was maintained after annealing at 700. C for 1 h. The characteristics of the limiting current were clearly observed between 400 degrees C and 600 degrees C, which can be attributed to the oxygen gas diffusion rate in the spiral Ta2O5 film. The current response time was 3 s or less after applying the voltage. The level of the limiting current was directly correlated with the oxygen gas concentration. Owing to the thermally stable spiral Ta2O5 microstructure, the characteristics of the limiting current, including the limiting current level and response time, were confirmed to be consistent for up to ten cycles of temperature modulations. The oxygen gas concentration and water vapor were separately measured by applying 1.1 V and 1.8 V, respectively. The presence of CO2 and H-2 did not affect the limiting current level for its application in the atmosphere.
引用
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页数:8
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共 40 条
[1]   Ultrahigh temperature platinum microheater encapsulated by reduced-TiO2 barrier layer [J].
Akasaka, Shunsuke ;
Boku, Encho ;
Amamoto, Yurina ;
Yuji, Hiroyuki ;
Kanno, Isaku .
SENSORS AND ACTUATORS A-PHYSICAL, 2019, 296 :286-291
[2]   Thin film YSZ-based limiting current-type oxygen and humidity sensor on thermally oxidized silicon substrates [J].
Akasaka, Shunsuke .
SENSORS AND ACTUATORS B-CHEMICAL, 2016, 236 :499-505
[3]   Hydrogen in the atmosphere: Observations above a forest canopy in a polluted environment [J].
Barnes, DH ;
Wofsy, SC ;
Fehlau, BP ;
Gottlieb, EW ;
Elkins, JW ;
Dutton, GS ;
Novelli, PC .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2003, 108 (D6)
[4]   High-temperature low-power performing micromachined suspended micro-hotplate for gas sensing applications [J].
Belmonte, JC ;
Puigcorbé, J ;
Arbiol, J ;
Vilà, A ;
Morante, JR ;
Sabaté, N ;
Gràcia, I ;
Cané, C .
SENSORS AND ACTUATORS B-CHEMICAL, 2006, 114 (02) :826-835
[5]   Characterization of porous Pt films deposited via sputtering [J].
Chang, Ikwhang ;
Woo, Seunghee ;
Lee, Min Hwan ;
Shim, Joon Hyung ;
Piao, Yuanzhe ;
Cha, Suk Won .
APPLIED SURFACE SCIENCE, 2013, 282 :463-466
[6]   Measuring Regional Atmospheric CO2 Concentrations in the Lower Troposphere with a Non-Dispersive Infrared Analyzer Mounted on a UAV, Ogata Village, Akita, Japan [J].
Chiba, Takashi ;
Haga, Yumi ;
Inoue, Makoto ;
Kiguchi, Osamu ;
Nagayoshi, Takeshi ;
Madokoro, Hirokazu ;
Morino, Isamu .
ATMOSPHERE, 2019, 10 (09)
[7]   Evolution of nanoporosity in dealloying [J].
Erlebacher, J ;
Aziz, MJ ;
Karma, A ;
Dimitrov, N ;
Sieradzki, K .
NATURE, 2001, 410 (6827) :450-453
[8]   Charge storage at the Pt/YSZ interface [J].
Foti, Gyoergy ;
Jaccoud, Arnaud ;
Falgairette, Cyril ;
Comninellis, Christos .
JOURNAL OF ELECTROCERAMICS, 2009, 23 (2-4) :175-179
[9]   Fabrication of porous and pillar-shaped Mg by magnetron sputtering [J].
Ham, B. ;
Junkew, A. ;
Bufford, D. ;
Arroyave, R. ;
Zhang, X. .
THIN SOLID FILMS, 2014, 550 :220-226
[10]   Detection of low NO2 concentrations with low power micromachined tin oxide gas sensors [J].
Horrillo, MC ;
Sayago, I ;
Arés, L ;
Rodrigo, J ;
Gutiérrez, J ;
Götz, A ;
Gràcia, I ;
Fonseca, L ;
Cané, C ;
Lora-Tamayo, E .
SENSORS AND ACTUATORS B-CHEMICAL, 1999, 58 (1-3) :325-329