À propos de cet article

Citez

Z. Chen, C. Lu, “Humidity sensors: a review of materials and mechaninsms”, Sensor Letters, 3, 2005, pp. 274-295.10.1166/sl.2005.045Search in Google Scholar

A. Cusano, J. M. López-Higuera, I. R. Matias, B. Culshaw, “Optical fiber sensor technology and applications”, IEEE Sensors Journal, 8, 2008, pp. 1052-1054.10.1109/JSEN.2008.927415Search in Google Scholar

J. Goicoechea, C. R. Zamarreño, I. R. Matias, F. J. Arregui, “Minimizing the photobleaching of self-assembled multilayers for sensor applications”, Sensors and Actuators B, vol. 126, 2007, pp. 41-47.10.1016/j.snb.2006.10.037Search in Google Scholar

J. M. Corres, I. R. Matias, M. Hernaez, J. Bravo, F. J. Arregui, “Optical fiber humidity sensors using nanostructured coatings of SiO2 nanoparticles”, IEEE Sensors Journal, vol. 8, 2008, pp. 281-285.10.1109/JSEN.2008.917487Search in Google Scholar

F. J. Arregui, I. R. Matias, K. L. Cooper, R. O. Claus, “Simultaneous measurement of humidity and temperature by combining a reflective intensity-based optical fiber sensor and a fiber bragg grating,” IEEE Sensors Journal, vol. 2, 2002, pp. 482-487.10.1109/JSEN.2002.804577Search in Google Scholar

J. M. Corres, I. Del Villar, I. R. Matias, F. J. Arregui, “Fiber-optic pH-sensors in long-period fiber gratings using electrostatic self-assembly”, Optics Letters, 32 (1), 2007, pp. 29-31.10.1364/OL.32.000029Search in Google Scholar

B. Larrion, M. Hernaez, F. J. Arregui, J. Goicoechea, J. Bravo, I. R. Matias, “Photonic crystal fiber temperature sensor based on quantum dot nanocoatings”, Journal of Sensors, 2009, 932471.10.1155/2009/932471Search in Google Scholar

M. Rajarajan, T. Dar, C. Themistos, B. M. A. Rahman, K. T. V. Grattan, J. Homola, J. Irudayaraj, “Modelling and characterisation of surface plasmon based sensors for the detection of E. coli”, Journal of Modern Optics, 56 (4), 2009, pp. 564-571.10.1080/09500340802657870Search in Google Scholar

I. Del Villar, C. R. Zamarreño, M. Hernáez, I. R. Matías, F. J. Arregui, “Lossy Mode Resonance generation with Indium Tin Oxide coated optical fibers for sensing applications”, Journal of Lightwave Technology, DOI:10.1109/JLT.2009.2036580 (2009).10.1109/JLT.2009.2036580Search in Google Scholar

C. R. Zamarreño, M. Hernaez, I. Del Villar, I. R. Matias, F. J. Arregui, “Optical fiber refractometers with tunable sensitivity based on Indium Tin Oxide coatings”, IEEE Sensors Journal, DOI 10.1109/JSEN.2009.2034628 (2009).10.1166/sl.2010.1340Search in Google Scholar

G. Decher, “Fuzzy nanoassemblies: Toward layered polymeric multicomposites”, Science, vol. 277, no. 5330, 1997, pp. 1232-1237.Search in Google Scholar

J. Goicoechea, F. J. Arregui, J. M. Corres, I. R. Matías, “Study and optimization of selfassembled polymeric multilayer structures with neutral red for pH sensing applications”, vol. 2008, Journal of Sensors.10.1155/2008/142854Search in Google Scholar

R. Ota, S. Seki, Y. Sawada, M. Ogawa, T. Nishide, A. Shida, M. Ide, “Indium-tin-oxide films prepared by dip coating using an etanol solution of indium chloride and tin chloride,” Surface and Coatings Technology, vol. 169-170, 2003, pp. 521-524.10.1016/S0257-8972(03)00168-3Search in Google Scholar

eISSN:
1178-5608
Langue:
Anglais
Périodicité:
Volume Open
Sujets de la revue:
Engineering, Introductions and Overviews, other