A Survey on Capacitive based CO2 Gas Sensor

  • Authors

    • Ms. Shwetha H.R
    • Dr Rudraswamy S. B.
    https://doi.org/10.14419/ijet.v7i3.34.19698
  • Gas Sensor, CO2, Sensitivity, Selectivity, Metal Oxide
  • In this current scenario, different sensing mechanisms are investigated and used in detection of hazardous gases. A review of capacitive type gas sensor for detection is presented in this paper. Even though there are very limited numbers of publications on capacitive based gas sensors, detection of CO2 based on change in dielectric constant it shows good sensing mechanism with sensitivity and high reliability. 
  • References

    1. [1] Hygien Institute, Chinese Academy of Medical Sciences, “Method for detecting poisonous substance in airâ€, China, 1974,2 (Chinese).

      [2] P. Altshuller, “Advances in chromatographyâ€, 1968, p.5.

      [3] A. Zlatkis, Scz. Tech. Arosp. Rep., 1976, 14, (22).

      [4] S.M. Sze, Semiconductor sensors, John Wiley & Sons, Inc., New York, 1994.

      [5] Capacitive Type Gas Sensors Tatsumi Ishihara & Shogo Matsubara Journal of Electroceramics 2:4, 215, 228, 1998

      [6] Metal Oxide Gas Sensors: Sensitivity and Influencing Factors Chengxiang Wang, Longwei Yin , Luyuan Zhang, Dong Xiang and Rui Gao Sensors 2010, 10, 2088-2106.

      [7] Henrich, V.E.; Cox, P.A. The Surface Science of Metal Oxides; Cambridge University Press: Cambridge, UK, 1994.

      [8] Kanazawa, E.; Sakai, G.; Shimanoe, K.; Kanmura, Y.; Teraoka, Y.; Miura, N.; Yamazoe, N.

      [9] T. Seiyama, A. Kato, K. Fujushi, M. Nagatani, A new detector for gaseous components using semiconductive thin films, Anal. Chem. 34 (1962) 1502f.

      [10] N. Taguchi, Japenese Patent 45-38200.

      [11] N. Taguchi, Japenese Patent 47-38840.

      [12] N. Taguchi, US Patent 3 644 795.

      [13] Characterization of carbon nanotubes based resistive and capacitive gas sensors, Ning Ma, 2007

      [14] Franke, M.E.; Koplin, T.J.; Simon, U. Metal and Metal Oxide Nanoparticles in Chemiresistors: Does the Nanoscale Matter? Small 2006, 2, 36-50.

      [15] Schierbaum, K.D.; Weimar, U.; Göpel, W.; Kowalkowski, R. Conductance, Work Function and Catalytic Activity of SnO2-Based Gas Sensors. Sens. Actuat. B 1991, 3, 205-214.

      [16] K. Satake, A. Kobayashi, T. Inoue, T. Nakahara, and T. Takeuchi, Proc. 3rd. Inter. Meet. on Chem. Sensors, (Cleveland, 1990), p. 334.

      [17] T. Maekawa, J. Tamaki, N. Miura, and N. Yamazoe, Chem. Lett., 1991, 575 (1991).

      [18] M. Akiyama, J. Tamaki, N. Miura, and N. Yamazoe, Chem. Lett., 1991, 575 (1991).

      [19] T. Ishihara, K. Shiokawa, K. Eguchi, and H. Arai, Chem. Lett., 1988, 997 (1988).

      [20] T. Ishihara, K. Shiokawa, K. Eguchi, and H. Arai, Sensors and Actuators, 19, 259 (1989).

      [21] K. Suzuki, K. Koyama, T. Inuzuka, and Y. Nabeta, Proc. 3rd Sensor. Symp., (Tsukuba, 1983) p. 251.

      [22] V.K. Khanna and R.K. Nahar, Sensors and Actuators, 5, 187 (1984).

      [23] Y. Sadaoka and Y. Sakai, Proc. Inter. Meet. on Chem. Sensors, (Fukuoka, 1983), p. 416.

      [24] M. Takeuchi, Y. Minamiya, F. Kaneko, and H. Nagasaki, Proc. Inter. Meet. on Chem. Sensors, (Fukuoka, 1983), p. 422. 18. Y. Nabeta, Proc. Inter. Meet. on Chem. Sensors, (Fukuoka, 1983), p. 410.

      [25] G.J. Rogers, L.C. Westcott, R.A. Davies, H.O. Ali, G.H. Swallow, and E. Read, Proc. Inter. Meet. on Chem. Sensors, (Fukuoka, 1983), p. 428.

      [26] T. Seiyama, N. Yamazoe, and H. Arai, Sensors and Actuators, 4, 85 (1983).

      [27] N. Yamazoe and Y. Shimizu, Sensors and Actuators, 10, 379 (1989).

      [28] B.M. Kulwicki, J. Am. Ceram. Soc., 74, 697 (1991).

      [29] W. Smetana and W. Wiedermann, Sensors and Actuators, 11, 329 (1987).

      [30] H. Grange, C. Bieth, H. Boucher, and C. Delapierre, Sensors and Actuators, 12, 291 (1987).

      [31] K.J. Balkus, L.J. Ball, B.E. Gnade, and J.M. Anthony, Chem. Mater., 9, 380 (1997).

      [32] T. Ishihara and Y. Takita, Catalysis (edited by J.J. Spivey), Royal Chem. Soc., 12, 21 (1996).

      [33] F. Menil, C. Lucat, and H. Debeda, sensors & Actuators, B24±25, 415 (1995).

      [34] [34]R. Cote, C.W. Bole, and M. Gautier, J. Electrochem. Soc., 131, 63 (1984).

      [35] T. Maruyama, S. Sakai, and Y. Saito, Solid State Ionics, 23, 107 (1987).

      [36] T. Ogata, S. Fujitsu, M. Miyayama, K. Koumoto, and Y. Yanagida, J. Mater. Sci. Lett., 5, 285 (1986).

      [37] J. Liu and W. Weppner, Solid State Commun., 76, 311 (1990).

      [38] S. Yao, Y. Shimizu, N. Miura, and N. Yamazoe, Chem. Lett., 1990, 2033 (1990).

      [39] M. Nagai and T. Nishio, Sensors and Actuators, 15, 145 (1988).

      [40] Y. Ishiguro, Y. Nagawa, and H. Futata, Proc. 2nd Inter. Meet. on Chem. Sensors, (Bordeaux, 1986) p. 719.

      [41] T. Yoshioka, N. Mizuno, and M. Iwamoto, Chem. Lett., 1991, 1249 (1991).

      [42] Y. Shimizu, K. Komori, and M. Egashira, J. Electrochem. Soc., 136, 2256 (1989).

      [43] T. Ishihara, K. Kometani, M. Hashida, and Y. Takita, Chem. Lett., 1990, 2033 (1990).

      [44] T. Ishihara, K. Kometani, M. Hashida, and Y. Takita, Proc. 3rd Inter. Meet. on Chem. Sensors, (Cleveland, 1990) p. 188.

      [45] T. Ishihara, K. Kometani, Y. Mizuhara, and Y. Takita, J. Electrochem. Soc., 139, 2881 (1992).

      [46] T. Ishihara, K. Kometani, M. Hashida, and Y. Takita, J. Electrochem. Soc., 138, 173 (1991).

      [47] T. Ishihara, K. Kometani, Y. Mizuhara, and Y. Takita, Sensors and Actuators, B.5, 97 (1991).

      [48] T. Ishihara, K. Kometani, Y. Mizuhara, and Y. Takita, J. Am. Ceram. Soc., 75, 613 (1992).

      [49] T. Ishihara, K. Kometani, Y. Mizuhara, and Y. Takita, Chem. Lett., 1991, 1711 (1991).

  • Downloads

  • How to Cite

    Shwetha H.R, M., & Rudraswamy S. B., D. (2018). A Survey on Capacitive based CO2 Gas Sensor. International Journal of Engineering & Technology, 7(3.34), 918-923. https://doi.org/10.14419/ijet.v7i3.34.19698