Heat transfer control of micro-thermoelectric gas sensor for breath gas monitoring

被引:26
作者
Goto, Tomoyo [1 ,3 ]
Itoh, Toshio [1 ]
Akamatsu, Takafumi [1 ]
Sasaki, Yoshitaka [1 ,2 ]
Sato, Kazuo [2 ]
Shin, Woosuck [1 ]
机构
[1] Natl Inst Adv Ind Sci & Technol, Moriyama Ku, 2266-98 Shimo Shidami, Nagoya, Aichi 4638560, Japan
[2] Aichi Inst Technol, 1247 Yachigusa, Yakusa, Toyota 4700392, Japan
[3] Osaka Univ, Inst Sci & Ind Res, 8-1 Mihogaoka, Ibaraki 5670047, Japan
关键词
Gas sensor; Catalyst; Thermoelectric device; Micro-electromechanical systems (MEMS); Finite element method (FEM); HYDROGEN; COMBUSTION; CATALYST; DESIGN; METHANE;
D O I
10.1016/j.snb.2017.03.113
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A micro-thermoelectric gas sensor (micro-TGS) uses thermoelectric voltage induced by the catalytic combustion of hydrogen or methane for selective gas detection in breath. This is accomplished under an elevated temperature using a micro-heater built on the same membrane as a hotplate, which enables selective combustion of the target gas. A temperature differential built by the catalyst on the membrane induces the offset voltage (V-off) of the micro-TGS, which limits the amplifier circuit application. In this study, we strived to suppress V-off by an additive integration process of heat dissipation dots prepared using alpha-Al2O3 paste. In this paper, we discuss the effects of these alpha-Al2O3 dots on the thermal balance over the micro-TGS membrane by finite element method (FEM) modeling. When the dots were deposited in a symmetrical position to the combustion catalyst, V-off was compensated depending on the size, numbers, and locations of the dots. The micro-TGS heat transfer control by the dots was additionally verified by 3-D FEM modeling. The changes in V-off by the alpha-Al2O3 dots in FEM modeling were greater than those of the experiments, suggesting the high thermal conductivity of the micro-TGS membrane. The deviation of the membrane thermal conductivity due to the process non-uniformity significantly influenced the V-off; however, it was effectively reduced by the additive integration of dots. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:571 / 580
页数:10
相关论文
共 18 条
[1]   Applications of breath gas analysis in medicine [J].
Amann, A ;
Poupart, G ;
Telser, S ;
Ledochowski, M ;
Schmid, A ;
Mechtcheriakov, S .
INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 2004, 239 (2-3) :227-233
[2]   Thermo-mechanical design and characterization of low dissipation micro-hotplates operated above 500 °C [J].
Biro, Ferenc ;
Duecso, Csaba ;
Hajnal, Zoltan ;
Riesz, Ferenc ;
Pap, Andrea Edit ;
Barsony, Istvan .
MICROELECTRONICS JOURNAL, 2014, 45 (12) :1822-1828
[3]   Hybrid Volatolomics and Disease Detection [J].
Broza, Yoav Y. ;
Mochalski, Pawel ;
Ruzsanyi, Vera ;
Amann, Anton ;
Haick, Hossam .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2015, 54 (38) :11036-11048
[4]   Experimental and numerical investigation of a propane-fueled, catalytic mesoscale combustor [J].
Karagiannidis, Symeon ;
Marketos, Kimon ;
Mantzaras, John ;
Schaeren, Rolf ;
Boulouchos, Konstantinos .
CATALYSIS TODAY, 2010, 155 (1-2) :108-115
[5]   Ppm level methane detection using micro-thermoelectric gas sensors with Pd/Al2O3 combustion catalyst films [J].
Nagai, Daisuke ;
Nishibori, Maiko ;
Itoh, Toshio ;
Kawabe, Tsutomu ;
Sato, Kazuo ;
Shin, Woosuck .
SENSORS AND ACTUATORS B-CHEMICAL, 2015, 206 :488-494
[6]   Thermal Balance Analysis of a Micro-Thermoelectric Gas Sensor Using Catalytic Combustion of Hydrogen [J].
Nagai, Daisuke ;
Akamatsu, Takafumi ;
Itoh, Toshio ;
Izu, Noriya ;
Shin, Woosuck .
SENSORS, 2014, 14 (01) :1822-1834
[7]   CO oxidation performance of Au/Co3O4 catalyst on the micro gas sensor device [J].
Nishibori, M. ;
Shin, W. ;
Izu, N. ;
Itoh, T. ;
Matsubara, I. .
CATALYSIS TODAY, 2013, 201 :85-91
[8]   Sensing performance of thermoelectric hydrogen sensor for breath hydrogen analysis [J].
Nishibori, M. ;
Shin, W. ;
Izu, N. ;
Itoh, T. ;
Matsubara, I. .
SENSORS AND ACTUATORS B-CHEMICAL, 2009, 137 (02) :524-528
[9]   New structural design of micro-thermoelectric sensor for wide range hydrogen detection [J].
Nishibori, Maiko ;
Shin, Woosuck ;
Houlet, Lionel F. ;
Tajima, Kazuki ;
Itoh, Toshio ;
Izu, Noriya ;
Murayama, Norimitsu ;
Matsubara, Ichiro .
JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 2006, 114 (1334) :853-856
[10]   Microheater Meander Configurations for Combustion Catalysts in Thermoelectric Gas Sensor [J].
Nishibori, Maiko ;
Shin, Woosuck ;
Izu, Noriya ;
Itoh, Toshio ;
Matsubara, Ichiro .
SENSOR LETTERS, 2010, 8 (06) :792-800