Search / Korean Journal of Chemical Engineering
Korean Chemical Engineering Research,
Vol.47, No.6, 655-668, 2009
수정진동자를 이용한 센서시스템의 원리와 응용
Principle of Sensor Systems by using a Quartz Crystal and Their Applications
본 총설에서는 수정진동자 센서의 원리와 질량, 점성, 점탄성의 변화에 기초한 수정진동자 센서의 응용에 관하여 고찰하였다. 수정진동자의 기본원리와 공진주파수-공진저항 다이어그램에 관하여 상세히 기술하였다. 카본을 피막한 가스센스, 혈액응고를 이용한 센스, 전기화학분석, 결정화 분석 등에 관한 응용 예를 소개하였다. 이러한 연구 결과를 토대로 새로운 바이오센서나 화학센서 개발 가능성에 관하여 고찰하였다.
The principle and applications of quartz crystal sensors based on the three basic concepts for mass, viscosity, and viscoelastic changes are reviewed. In the general discussion the basic principle of quartz crystal and realization of a resonant frequency.resonant resistance diagram are described in detail. As examples of their applications, gas sensing with a carbon-coated quartz crystal, determination of the blood coagulation factor, an electrochemical analysis and crystallization analysis are reported. The possibility of developing new biosensors and chemical sensors is discussed on the basis of these results.
[References]
  1. Brown R, Zellers ET, "Environmental Monitoring", VCH publishers Inc., New York, pp. 529-554, 1989
  2. Muramatsu H, Dicks JM, Tamiya E, Karube I, Anal. Chem., 59, 2760, 1987
  3. Muramatsu H, Tamiya E, Karube I, J. Membrane Science, 41, 281, 1989
  4. Muramatsu H, Tamiya E, Suzuki M, Karube I, Anal. Chim. Acta., 215, 91, 1988
  5. Muramatsu H, Tamiya E, Suzuki M, Karube I, Anal. Chim. Acta., 217, 321, 1989
  6. Muramatsu H, Ye X, Suda M, Sakuhara T, Ataka T, J. Electroanal. Chem., 322, 311, 1992
  7. He YF, Wang Y, Zhu GY, Wang EK, J. Electroanal. Chem., 440(1-2), 65, 1997
  8. Orata D, Buttry DA, J. Am. Chem. Soc., 109, 3574, 1987
  9. Cho HS, Lee HJ, Choi KJ, Kim JM, Kim YH, Chang SM, HWAHAK KONGHAK, 38(2), 160, 2000
  10. Kim JM, Chang SM, Muramatsu H, J. Electrochem. Soc., 146(12), 4544, 1999
  11. Kim JM, Chang SM, Muramatsu H, Polymer, 40(12), 3291, 1999
  12. Chang SM, Kim JM, Muramatsu H, Ataka T, Cho WJ, Ha CS, Polymer, 37(16), 3757, 1996
  13. Kim JM, Chang SM, Muramatsu H, Applied Physics Letters, 74, 466, 1999
  14. Sauerbrey GZ, Zeitscrift Fuer Physic., 155, 206, 1959
  15. Chang SM, Muramatsu H, Kim JM, Materials Science and Engineering, C12, 111, 2000
  16. Muramatsu H, Kim JM, Chang SM, Analytical & Bioanalytical Chemistry, 372, 314, 2002
  17. Kim JM, Park JY, Song SH, Muramatsu H, Lee BJ, Chang SM, Sensors and Actuators, B76, 74, 2001
  18. Chang SM, Kim JM, Song SH, Chang YK, Muramatsu H, HWAHAK KONGHAK, 36(2), 189, 1998
  19. Kim JM, Chang SM, Suda Y, Muramatsu H, Sensors and Actuators, A72, 140, 1999
  20. Kurosawa S, Aizawa H, Han DS, Song SH, Kim YH, Chang SM, HWAHAK KONGHAK, 41(2), 147, 2003
  21. Cho HS, Lee HJ, Choi KJ, Kim JM, Kim YH, Chang SM, HWAHAK KONGHAK, 38(2), 160, 2000
  22. Song SH, Cho HS, Han SW, Chang SM, J. Korean Ind. Eng. Chem., 12(1), 22, 2001
  23. Han SW, Son SY, Song SH, Kim JM, Kim WS, Muramatsu H, Chang SM, HWAHAK KONGHAK, 40(6), 659, 2002
  24. Nakamura C, Song SH, Chang SM, Sugimoto N, Miyake J, Analytica Chimica Acta, 469, 183, 2002