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Micro toluene gas sensor of SWNTs-PtOx system using the vacuum filtering deposition method

진공여과증착법을 이용한 SWNT-PtOx계 마이크로 톨루엔 가스센서

  • 김일진 (대덕대학교 군사학부) ;
  • 전영집 (대덕대학교 군사학부) ;
  • 최창규 (대덕대학교 군사학부) ;
  • 이영욱 (호원대학교 지상무기학) ;
  • 최시영 (호원대학교 지상무기학) ;
  • 한창수 (한국기계연구원 나노기계시스템연구센터) ;
  • 한상도 (한국에너지기술연구원 광.전기소재연구센터)
  • Published : 2009.03.31

Abstract

Toluene($C_6H_5CH_3$) gas sensors were fabricated using $PtO_x$ loaded with SWNTs by a new deposition method. The nanoparticle powders of SWNTs-$PtO_x$ composite were deposited on Si wafer substrates by a vacuum filtering deposition method. The fabricated sensors were tested against toluene gas which is a kind of the Volatile Organic Compounds. The composition ratio that exhibited the highest response to toluene gases was SWNTs : $PtO_x\;=\;99:1$ in wt% ratio at operating temperature of about $150^{\circ}C$. The response and recovery times of the sensors were as short as less than 1 min., respectively.

Keywords

References

  1. A.K. Srivastava, 'Detection of volatile organic compounds(VOCs) using $SnO_2$gas-sensor array and artificial neural network', Sensors and Actuators B96, pp. 24-37, 2003 https://doi.org/10.1016/S0925-4005(03)00477-5
  2. S. Iijima, and T. Ichihashi, 'Single-shell carbon nanotubes of 1-nm diameter', Nature 363, pp. 603-605, 1993 https://doi.org/10.1038/363603a0
  3. T. Someya, J. Small, P. Kim, C. Nuckolls, and J.T. Yardley, 'Alcohol vapor sensors based on single-walled carbon nanotube field effect transistors', Nano Lett. 3, pp. 877-881, 2003 https://doi.org/10.1021/nl034061h
  4. Chu Xiangfeng, Wang Caihong, Jiang Dongli, and Zheng Chenmou, 'Ethanol sensor based on indium oxide nanowires prepared by carbothermal reductionreaction', Chemical Physics Letters, vol. 399, pp. 461-464, 2004 https://doi.org/10.1016/j.cplett.2004.10.053
  5. Junya Suehiro1, Guangbin Zhou and Masanori Hara, 'Fabrication of a carbon nanotube-based gas sensor using dielectrophoresis and its application for ammonia detection by impedance spectroscopy', J. Phys. D: Appl. Phys. vol. 36, pp. 109-114, 2003 https://doi.org/10.1088/0022-3727/36/2/306
  6. Penza M., Cassano G., Aversa P., Cusano A., Consales M., Giordano M., and Nicolais L, 'Acoustic and optical VOCs sensors incorporating carbon nanotubes', Sensors Journal, vol. 6, pp. 867-875, 2006 https://doi.org/10.1109/JSEN.2006.877974
  7. W-S Cho, S-l Moon, Y-D Lee, Y-H Lee, J-H Park, and B-K Ju, 'Multiwall carbon nanotube gas sensor fabricated using thermomechanical structure', ElectronDevice Letters, vol. 26, pp. 498-500, 2005 https://doi.org/10.1109/LED.2005.851095
  8. 한상도, 홍대웅, 한치환, 전일수 '나노 $SnO_2$결정 와 백 금 박막히터를 이용한 접촉연소식 마이크로 가스센 서의 감응특성 연구', 센서학회지, 제17권, 제3호, pp. 178-182, 2008
  9. 박소정, 곽준혁, 박종혁, 이홍열, 문승언, 박강호, 김 종대, 김규태, '졸-겔법으로 증착된 ZnO 나노막대 를 이용한 고감도 이산화질소 가스 센서 제작 및 특 성 연구', 센서학회지, 제17권, 제2호, pp. 147-150, 2008 https://doi.org/10.5369/JSST.2008.17.2.147
  10. Ray H. Baughman, Anvar A. Zakhidov, and Walt A. de Heer, 'Carbon nanotubes-the route toward applications', Science, vol. 297, pp. 787-792, 2002 https://doi.org/10.1126/science.1060928
  11. Y. Makita, S. Suzuki, H. Kataura, and Y. Achiba, 'Synthesis of single wall carbon nanotubes by using arc discharge technique in nitrogen atmosphere', Eur. Phys. J. D, vol. 34, pp. 287-289, 2005 https://doi.org/10.1140/epjd/e2005-00160-3
  12. H-H Kim and H-J Kim, 'Synthesis of single wall carbon nanotubes by using arc discharge technique in nitrogen atmosphere', J. Applied Physics, vol. 46, pp. 1818-1820, 2007 https://doi.org/10.1143/JJAP.46.1818

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