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Methane Gas Sensing Properties of the Zinc Oxide Nanowhisker-derived Gas Sensor
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  • Methane Gas Sensing Properties of the Zinc Oxide Nanowhisker-derived Gas Sensor
  • Methane Gas Sensing Properties of the Zinc Oxide Nanowhisker-derived Gas Sensor
저자명
Moon. Hyung-Sin,Kim. Sung-Eun,Choi. Woo-Chang
간행물명
Transactions on electrical and electronic materials
권/호정보
2012년|13권 2호|pp.106-109 (4 pages)
발행정보
한국전기전자재료학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

A low power methane gas sensor with microheater was fabricated by silicon bulk micromachining technology. In order to heat up the sensing layer to operating temperature, a platinum (Pt) micro heater was embedded in the gas sensor. The line width and gap of the microheater was 20 ${mu}m$ and 4.5 ${mu}m$, respectively. Zinc oxide (ZnO) nanowhisker arrays were grown on a sensor from a ZnO seed layer using a hydrothermal method. A 200 ml aqueous solution of 0.1 mol zinc nitrate hexahydrate, 0.1 mol hexamethylenetetramine, and 0.02 mol polyethylenimine was used for growing ZnO nanowhiskers. Temperature distribution of the sensor was analyzed by infrared thermal camera. The optimum temperature for highest sensitivity was found to be $250^{circ}C$ although relatively high (64%) sensitivity was obtained even at as low a temperature as $150^{circ}C$. The power consumption was 72 mW at $250^{circ}C$, and only 25 mW at $150^{circ}C$.