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A Comparative Study in the Sensitivity of Optical Fiber Refractometers based on the Incorporation of Gold Nanoparticles Into Layer-by-Layer Films Cover

A Comparative Study in the Sensitivity of Optical Fiber Refractometers based on the Incorporation of Gold Nanoparticles Into Layer-by-Layer Films

Open Access
|Jun 2015

References

  1. P. R. Cooper, “Refractive-index measurements of liquids used in conjunction with optical fibers.” Appl. Opt., vol. 22, pp. 3070-3072, 1983.
  2. M. Daimon and A. Masumura, “Measurement of the refractive index of distilled water from the near-infrared region to the ultraviolet region,” Appl. Opt., vol. 46, pp. 3811-3820, 2007.
  3. M. Mitsushio, S. Higashi and M. Higo, “Construction and evaluation of a gold-deposited optical fiber sensor system for measurements of refractive indices of alcohols,” Sens. Actuators A Phys, vol. 111, pp. 252-259, 2004.10.1016/j.sna.2003.11.029
  4. B. Culshaw and A. Kersey, “Fiber-optic sensing: a historical perspective”, J. Lightwave Technol., vol. 26, pp. 1064-1068, 2008.
  5. Q. Wu, Y. Semenova, P. Wang and G. Farrell, “High sensitivity SMS fiber structure based refractometer – analysis and experiment,” Opt. Exp., vol. 19, pp. 7937-7944, 2011.
  6. D. Jia, Z. Yao and C. Li, “The Transformer Winding Temperature Monitoring System Based on Fiber Bragg Grating,” International Journal on Smart Sensing and Intelligent Systems, vol. 8, pp. 538-560, 2015.10.21307/ijssis-2017-771
  7. T. Wang, S. Korposh, S. James, R. Tatam and S. W. Lee, “Optical fibre long period grating sensor with a polyelectrolyte alternate thin film for gas sensing of amine odors,” Sens. Actuators B, vol. 185, pp. 117-124, 2013.10.1016/j.snb.2013.04.034
  8. N. D. Rees, S. W. James, R.P. Tatam and G. J. Ashwell, “Optical fiber long-period gratings with Langmuir—Blodgett thin-film overlays”, Opt. Lett., vol. 27, pp. 686-688, 2002.10.1364/OL.27.00068618007899
  9. A. S. Guru Prasad, M. Anitha, K. S. Nanjunda Rao and S. Asokan “Measurement of StressStrain Response of a Rammed Earth Prism in Compression using Fiber Bragg Grating Sensors”, International Journal on Smart Sensing and Intelligent Systems, vol. 4, pp. 376-387, 2011.10.21307/ijssis-2017-445
  10. L. Rindorf, J. B. Jensen, M. Dufva, L. H. Pedersen, P. E. Høiby and O. Bang “Photonic crystal fiber long-period gratings for biochemical sensing,” Opt. Exp., vol. 14, pp. 8224-8231, 2006.
  11. Q. Sui, M. Jiang, Z. Jin, F. Zhang, Y. Cao and L. Jia, “Optical Fiber Relative Humidity Sensor Based on Fabry-Perot Interferometer Coated with Sodium-p-styrenesulfonate/allyamine Hydrochloride Films,” Sensors and Materials, vol. 26, pp. 291-298, 2014.10.18494/SAM.2014.996
  12. M. Yin, Q. An, J. Qian and A. Zhang, “Preparation and Application of Fiber-Optic Sensors Based on Layer-by-Layer Self-Assembly Multilayers,” Progress in Chemistry, vol. 23, pp. 25682575, 2011.
  13. B. J. Luff, J. S. Wilkinson and G. Perrone, “Indium tin oxide overlayered waveguides for sensor applications,” Appl. Opt., vol. 36, pp. 7066-7072, 1997.
  14. M. Yin, B. Gu, Q. Zhao, J. Qian, A. Zhang, Q. An, and S. He, “Highly Sensitive and Fast Responsive Fiber-Optic Modal Interferometric pH Sensor Based on Polyelectrolyte Complex and Polyelectrolyte Self-Assembled Nanocoating,” Analytical and Bioanalytical Chemistry, vol. 399, pp. 3623-3631, 2011.
  15. L. Bansal and M. A. El-Sherif, “1-5 Napthalenedisulphonic ACID Doped Polypyrrole Thin Films as Coatings to Optical Fibers for Organophosphate Sensing”, International Journal on Smart Sensing and Intelligent Systems, vol. 3, pp. 230-252, 2010.10.21307/ijssis-2017-390
  16. M. Dashti, J. Mokhtari, M. Nouri and F. Shirini, “Imparting Conductivity and Chromic Behavior on Polyester Fibers by Means of Poly(3-Methylthiophene) Nanocoating,” J Appl Polym Sci, vol. 124, pp. 3007-3012, 2012.
  17. M. Smietana, W. J. Bock, J. Szmidt and G. R. Pickrell “Nanocoating Enhanced Optical Fiber Sensors”, Ceramic Transactions, vol. 222, pp. 275-286, 2010.10.1002/9780470930991.ch26
  18. P. J. Rivero, A. Urrutia, J. Goicoechea, I. R. Matias and F. J. Arregui, “A Lossy mode resonance optical sensor using silver nanoparticles-loaded films for monitoring human breathing,” Sens. Actuators B, vol. 187, pp. 40-44, 2013.10.1016/j.snb.2012.09.022
  19. P. J. Rivero, M. Hernaez, J. Goicoechea, I. R. Matias and F. J. Arregui, “Optical fiber refractometers based on localized Surface plasmon resonance (LSPR) and lossy mode resonance (LMR)” Proc. SPIE 9157, 91574T, 2014.10.1117/12.2059259
  20. I. Del Villar, M. Hernaez, C. R. Zamarreño, P. Sánchez, C. Fernández-Valdivielso, F. J. Arregui and I. R. Matias, “Design rules for Lossy mode resonance based sensors,” Appl. Opt., vol. 51, pp. 4298-4307, 2012.
  21. I. Del Villar, C. R. Zamarreño, M. Hernaez, F. J. Arregui and I. R. Matias, “Generation of lossy mode resonances with absorbing thin-films”, J. Lightwave Technol., vol. 28, pp. 33513357, 2010.
  22. B. Liedberg, C. Nylander and I. Lunström, “Surface plasmon resonance for gas detection and biosensing,” Sens. Actuators B, vol. 4, pp. 299-304, 1983.10.1016/0250-6874(83)85036-7
  23. R. C. Jorgenson and S. S. Yee, “A fiber-optic chemical sensor based on surface plasmon resonance,” Sens. Actuators B, vol. 12, pp. 213-220, 1993.10.1016/0925-4005(93)80021-3
  24. Y. -. Kim, W. Peng, S. Banerji and K. S. Booksh, “Tapered fiber optic surface plasmon resonance sensor for analyses of vapor and liquid phases,” Opt. Lett., vol. 30, pp. 2218-2220, 2005.
  25. L. Chau, Y. Lin, S. Cheng and T. Lin, “Fiber-optic chemical and biochemical probes based on Localized Surface Plasmon Resonance”, Sens. Actuators B, vol. 113, pp. 100-105, 2006.10.1016/j.snb.2005.02.034
  26. Y. Shao, S. Xu, X. Zheng, Y. Wang and W. Xu, “Optical Fiber LSPR Biosensor Prepared by Gold Nanoparticle Assembly on Polyelectrolyte Multilayer”, Sensors, vol. 10, pp. 3585-3596, 2010.
  27. S. K. Srivastava, V. Arora, S. Sapra and B. D. Gupta, “Localized Surface Plasmon Resonance-based fiber optic U-shaped biosensor for the detection of blood glucose,” Plasmonics, vol. 7, pp. 261-268, 2012.10.1007/s11468-011-9302-8
  28. M. Rycenga, C. M. Cobley, J. Zeng, W. Li, C. H. Moran, Q. Zhang, D. Qin and Y. Xia, “Controlling the synthesis and assembly of silver nanostructures for plasmonic applications,” Chem. Rev., vol. 111, pp. 3669-3712, 2011.
  29. P. J. Rivero, A. Urrutia, J. Goicoechea, F. J. Arregui and I. R. Matías, “Humidity Sensor Based on Silver Nanoparticles Embedded in a Polymeric Coating”, International Journal on Smart Sensing and Intelligent Systems, vol. 5, pp. 71-83, 2012.10.21307/ijssis-2017-471
  30. L. M. Liz-Marzán, “Nanometals: Formation and color”, Materials Today, vol. 7, pp. 26-31, 2004.10.1016/S1369-7021(04)00080-X
  31. P. C. Angelomé, H. H. Mezerji, B. Goris, I. Pastoriza-Santos, J. Pérez-Juste, S. Bals and L. M. Liz-Marzán, “Seedless synthesis of single crystalline Au nanoparticles with unusual shapes and tunable LSPR in the Near-IR”, Chem Mat, vol. 24, pp. 1393-1399, 2012.
  32. P. J. Rivero, J. Goicoechea, A. Urrutia and F. J. Arregui, “Effect of both protective and reducing agents in the synthesis of multicolor silver nanoparticles,” Nanoscale. Res. Lett., vol. 8, pp. 1-9, 2013.10.1186/1556-276X-8-101359997023432942
  33. Z. Wang, B. Tan, I. Hussain, N. Schaeffer, M. F. Wyatt, M. Brust and A. I. Cooper, “Design of polymeric stabilizers for size-controlled synthesis of monodisperse gold nanoparticles in water”, Langmuir, vol. 23, pp. 885-895, 2007.10.1021/la062623h17209648
  34. G. Decher, “Fuzzy nanoassemblies: toward layered polymeric multicomposites,” Science, vol. 277, pp. 1232-1237, 1997.
  35. P. J. Rivero, J. Goicoechea, I. R. Matias and F. J. Arregui, “A comparative study of two different approaches for the incorporation of silver nanoparticles into Layer-by-Layer films” Nanoscale Res. Lett., vol 9, pp. 1-11, 2014.10.1186/1556-276X-9-301406631024982607
  36. P. J. Rivero, J. Goicoechea, A. Urrutia, I. R. Matias and F. J. Arregui, “Multicolor layer-bylayer films using weak polyelectrolyte assisted synthesis of silver nanoparticles” Nanoscale Res. Lett., vol8, pp. 1-10, 2013.10.1186/1556-276X-8-438381659224148227
  37. P. J. Rivero, A. Urrutia, J. Goicoechea, and F. J. Arregui, “Optical fiber humidity sensors based on Localized Surface Plasmon Resonance (LSPR) and Lossy-mode resonance (LMR) in overlays loaded with silver nanoparticles”, Sens. Actuators B, vol. 173, pp. 244-249, 2012.10.1016/j.snb.2012.07.010
Language: English
Page range: 822 - 841
Submitted on: Mar 20, 2015
Accepted on: Apr 15, 2015
Published on: Jun 1, 2015
Published by: Professor Subhas Chandra Mukhopadhyay
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2015 Pedro J. Rivero, Miguel Hernaez, Javier Goicoechea, Ignacio R. Matías, Francisco J. Arregui, published by Professor Subhas Chandra Mukhopadhyay
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.