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Humidity sensor based on silver nanoparticles embedded in a polymeric coating

Open Access
|Mar 2012

References

  1. Z. Chen, C. Lu, “Humidity Sensors: A Review of Materials and Mechanisms,” Sensors Letters, vol. 3, pp. 274-295, 200510.1166/sl.2005.045
  2. R. Jindal, S.Tao, J.P. Singh, P.S. Gaikwad, “High dynamic range fiber optic relative humidity sensor,” Optical Engineering, vol. 41, pp. 1093-1096, 2002.
  3. A. D. Kersey, M. A. Davis, H. J. Patrick, M. LeBlanc, K. P. Koo, C. G. Askins, M. A. Putnam, E. J. Friebele, “Fiber grating sensors,” J. Lightwave Technol., vol. 15, pp. 1442-1462, 1997.
  4. S. W. James, R. P. Tatam, “Optical fibre long-period grating sensors: Characteristics and application,” Measurement Science and Technology, vol. 14, pp. R49-R61, 2003.10.1088/0957-0233/14/5/201
  5. V. Bhatia, A. M. Vengsarkar, “Optical fiber long-period grating sensors,” Opt. Lett., vol. 21, pp. 692–694, 1996.10.1364/OL.21.000692
  6. G. Decher, “Fuzzy nanoassemblies: toward layered polymeric multicomposites,” Science, vol. 277, pp. 1232–1237, 1997.
  7. M. Schönhoff, “Self-assembled polyelectrolyte multilayers”, Current Opinion in Colloid and Interface Science, vol. 8, pp. 86-95, 2003.10.1016/S1359-0294(03)00003-7
  8. B. Kim, S. W. Park, P. T. Hammond, “Hydrogen-bonding layer-by-layer-assembled biodegradable polymeric micelles as drug delivery vehicles from surfaces,” ACS Nano, vol. 2, pp. 386-392, 2008.10.1021/nn700408z
  9. P. M. Nguyen, N. S. Zacharia, E. Verploegen, P. T. Hammond, “Extended release antibacterial layer-by-layer films incorporating linear-dendritic block copolymer micelles,” Chemistry of Materials, vol. 19, pp. 5524-5530, 2007.
  10. A. Urrutia, P.J. Rivero, J. Goicoechea, L. Ruete, C. Fernandez-Valdivieso, F.J. Arregui, I.R. Matías, “An antibacterial surface coating composed of PAH/SiO2 nanostructurated films by layer by layer,“ Physica Status Solidi (C) Current Topics in Solid State Physics, vol. 7, pp. 2774-2777, 2010.
  11. S.S. Shiratori, M.F. Rubner, “pH-dependent thickness behavior of sequentially adsorbed layers of weak polyelectrolytes,“ Macromolecules, vol. 33, pp. 4213-4219, 2000.
  12. J. Choi, M.F. Rubner, “Influence of the degree of ionization on weak polyelectrolyte multilayer assembly,” Macromolecules, vol. 38, pp.116-124, 2005.10.1021/ma048596o
  13. F.J. Arregui, Y. Liu, I.R Matias, R.O. Claus, “Optical fiber humidity sensor using a nano-fabryperot cavity formed by the ionic self-assembly method”, Sens. Actuat. B, vol. 8, pp. 100– 105, 1999.10.1117/12.388127
  14. F. J. Arregui, K. L. Cooper, Y. Liu, I. R. Matías, R. O. Claus, “Optical fiber humidity sensor with a fast response time using the ionic self-assembly method,” IEICE Trans. Electron, vol. E83-C, no. 3, pp. 360–365, 2000.
  15. 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, pp. 281–285, 2008.10.1109/JSEN.2008.917487
  16. G. A. ---Gutierrez, J. R. Ma - Mendoza, F. Ruiz, “Synthesis and antibacterial activity of silver nanoparticles with different sizes,” Journal of Nanoparticle Research, vol. 10, pp. 1343-1348, 2008.
  17. V.K. Sharma, R.A. Yngard, Y. Lin, “Silver nanoparticles: Green synthesis and their antimicrobial activities,“ Advances in Colloid and Interface Science, vol. 145, pp. 83-96, 2009.10.1016/j.cis.2008.09.002
  18. M. Kawashita, S. Tsuneyama, F. Miyaji, T. Kokubo, H. Kozuka, K. Yamamoto, “Antibacterial silver-containing silica glass prepared by sol–gel method,” Biomaterials, vol. 21, pp. 393-398, 2000.10.1016/S0142-9612(99)00201-X
  19. P.J. Rivero, A. Urrutia, J. Goicoechea, C.R. Zamarreño, F.J. Arregui, I.R. Matías, “An antibacterial coating based on a polymer/solgel hybrid matrix loaded with silver nanoparticles,” Nanoscale Research Letters, vol. 6 (305), 2011.10.1186/1556-276X-6-305
  20. B. Sepúlveda, P. Angelomé, L. Lechuga, L.M Liz-Marzán, “LSPR-based nanobiosensors,” Nanotoday, vol. 4, pp. 244-251, 2009.10.1016/j.nantod.2009.04.001
  21. R. C. Jorgenson, S. S. Yee, “A fiber-optic chemical sensor based on surface plasmon resonance,” Sens. Actuators B, vol. 12, p. 213-220, 1993.10.1016/0925-4005(93)80021-3
  22. J.N. Anker, W.P. Hall, O. Lyandres, N.C. Shah, J. Zhao, R.P. Van Duyne, “Biosensing with plasmonic nanosensors,” Nature Materials, vol 7, pp. 442-453, 2008.10.1038/nmat216218497851
  23. Z. Kobayashi, H. katakami, E. Mine, D. Nagao, M. Konno, L.M. Liz-Marzán, “Silica coating of silver nanoparticles using a modified Stöber method,” Journal of Colloid and Interface Science, vol. 283, pp. 392-396, 2005.10.1016/j.jcis.2004.08.18415721910
  24. C.R. Zamarreño, M. Hernaez, I. Del Villar, I.R. Matias, F.J. Arregui, “Tunable humidity sensor based on ITO-coated optical fiber,” Sensors and Acuators, B: Chemical, vol. 146, pp. 414417, 2010.
  25. C.R. Zamarreño, M. Hernaez, I. Del Villar, I.R. Matias, F.J. Arregui, “Optical fiber pH sensor fabrication by means of thin polymeric coatings,” Sensors and Acuators, B: Chemical, vol. 155, pp. 290-297, 2011.10.1016/j.snb.2010.12.037
Language: English
Page range: 71 - 83
Submitted on: Feb 1, 2012
Accepted on: Feb 15, 2011
Published on: Mar 1, 2012
Published by: Professor Subhas Chandra Mukhopadhyay
In partnership with: Paradigm Publishing Services
Publication frequency: 1 times per year

© 2012 Pedro J. Rivero, Aitor Urrutia, Javier Goicoechea, Francisco J. Arregui, Ignacio R. Matías, published by Professor Subhas Chandra Mukhopadhyay
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.