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Investigations of Optical Interferometric Structures for Application in Toxic Gas Sensors

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
Słowa kluczowe
Rocznik
Tom
Strony
269--280
Opis fizyczny
BIbliogr. 15 poz., rys.
Twórcy
autor
  • Institute of Physics, Silesian University of Technology, ul.Krzywoustego 2, 44-100 Gliwice, Poland
autor
  • Institute of Physics, Silesian University of Technology, ul.Krzywoustego 2, 44-100 Gliwice, Poland
autor
  • Johannes Kepler Universität, Linz
autor
  • Institute of Physics, Silesian University of Technology, ul.Krzywoustego 2, 44-100 Gliwice, Poland
  • Medical University of Warsaw
autor
  • Institute of Physics, Silesian University of Technology, ul.Krzywoustego 2, 44-100 Gliwice, Poland
Bibliografia
  • [1] Masanori Ando, Tetsuhiko Kobayashi, Masatake Haruta, „Optical CO detection by use of CuO/Au composite films”, Sensors and Actuators B 24-25 (1995) 851-853
  • [2] Zhengtian Gu, Peihui Liang, „Novel optical film sensor design based on p-polarized reflectance”, Optics & Laser Technology 36(2004) 211-217
  • [3] Kazunari Shinbo, Masahiro Minagawa, Hideaki Takasaka, Keizo Kato, Futao Kaneko, Takahiro Kawakami, „Electrical and luminescent properties due to gas adsorption in electroluminescent device of metal-free phthalocyanine”, Colloids and Surfaces A: Physicochemical and Engineering Aspects 198-200 (2002) 905-909
  • [4] Abliz Yimit, Kiminori Itoh, Masayuki Murabayashi, „Detection of ammonia in the ppt range based on a composite optical waveguide pH sensor”, Sensors and Actuators B 88 (2003) 239-245
  • [5] Jiri Homola, Sinclair S. Yee, Gunter Gauglitz, „Surface plasmon resonance sensors; review”, Sensors and Actuators B 54 (1999) 3-15
  • [6] N.E, Agbor, J.P. Cresswell, M.C. Petty, A.P, Monkman, „An optical gas sensor based onpolyaniline Langmuir-Blodgett films”, Sensors and Actuators B 41 (1997) 137-141
  • [7] G, Harsanyi, „Polymer films in sensor application”, Technomics Publishing Company, Lancaster, USA 1995
  • [8] E.T. Kang, K.G.Neoh, K,L, Tan, „Polyniline: A polymer with many interesting intrisinc redox states”, (Progress in Polymer Science) Prog. Polm. Sei. Vol. 23, 277-324, 1998
  • [9] R.V. Plank, Y. Wei, N.J. DiNardo, J.M. Vohs, „Characterization of highly conducting, ultra-thin polyaniline films produced by evaporative depostion”, Chemical Physics Letters 263 (1996) 33-38
  • [10] M.E. Nicho, M.Trejo. A. Garcia-Valenzuela, J.M. Saniger, J. Palacios, H. Hu „Polyaniline composite coatings interrogated by a nulling optical-transmittance bridge for sensing low concentrations of ammonia gas” Sensors and Actuators B 76 (2001) 18-24
  • [11] A.L. Kukla, Yu.M. Shirshov, S.A. Piletzky, „Ammonia sensors based on sensitive polianiline films”, Sensors and Actuators B 37 (1996) 135-140
  • [12] P. Kiattibutr, L. Tarachiwin, L. Ruangchuay, A. Sirivat, J. Schwank „Electrical conductivity responses of polyaniline films to SO2-N2 mixtures: effect of dopant type and doping level”, Reactive and Functional Polymers 53 (2002) 29-37
  • [13] www.dupont.com> www. atut. lublin.pl,. www.permapure.com
  • [14] H.Hu M .Trej 0 M.E.Nicho J. M. S aniger A.Garcia-Valenzuela,,,Adsorption kinetics of optochemical NH3 gas sensing with semiconductor polyaniline films” Sensors and Actuators B 82 (2002) 14-23
  • [15] S. Christie, E. Scorsone, K. Persaud, F. Kvasnik, „Remote detection of gaseous ammonia using the near infrared transmission properties of polyaniline”, Sensors and Actuators B 90 (2003) 163-169
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0008-0021
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