measurement device which is well suited to use as a
high resolution pH sensor. To do so, the layers
described can be coated directly on optical fibres of
various diameters or coated glass substrates can be
attached to the distal end of the fibre probes created.
In that way compact optical fibre sensors can be
created for a range of applications and as the work has
shown, stored for some time before use.
ACKNOWLEDGMENTS
This work was supported by Islamic Azad University-
South Tehran Branch and City University London.
REFERENCES
Ai, J., Jones, S. A. and Lvov, Y. M. 2003. Biomedical
Applications of Electrostatic Layer-By-Layer Nano-
Assembly of Polymers, Enzymes, and Nanoparticles.
Cell Biochemistry and Biophysics, 39, 23-43.
Bertrand, P., Jonas, A., Laschewsky, A. and Legras, R.
2000. Ultrathin Polymer Coatings by Complexation of
Polyelectrolytes at Interfaces: Suitable Materials,
Structure and Properties. Macromolecular Rapid
Communications, 21, 319-348.
Cassagneau, T., Mallouk, T. E. and Fendler, J. H. 1998.
Layer-by-layer Assembly of Thin Film Zener Diodes
from Conducting Polymers and Cdse Nanoparticles.
Journal Of The American Chemical Society, 120, 7848-
7859.
De Villiers, M. M., Otto, D. P., Strydom, S. J. and Lvov, Y.
M. 2011. Introduction to Nanocoatings Produced by
Layer-by-layer (Lbl) Self-Assembly. Advanced Drug
Delivery Reviews, 63, 701-715.
Decher, G., Hong, J. D. and Schmitt, J. 1992. Buildup Of
Ultra Thin Multi Layer Films By A Self Assembly
Process: Ii. Consecutively Alternating Adsorption Of
Anionic And Cationic Poly Electrolytes On Charged
Surfaces. Thin Solid Films, 831, 210-211.
Decher, G., Lvov, Y. and Schmitt, J. 1994. Proof Of
Multilayer Structural Organization In Self-Assembled
Polycation-Polyanion Molecular Films. Thin Solid
Films, 244, 772-777.
Decher, G. and Schlenoff, J. B. 2002. Multilayer Thin
Films, Wiley-Vch Verlag Gmbh and Co.
Dubas, S. T., Kumlangdudsana, P. and Potiyaraj, P. 2006.
Layer-by-layer Deposition of Antimicrobial Silver
Nanoparticles on Textile Fibers. Colloids and Surfaces
A: Physicochemical and Engineering Aspects, 289,
105-109.
Egawa, Y., Hayashida, R. and Anzai, J.-I. 2007. Covalently
Cross-Linked Multilayer Thin Films Composed of
Diazoresin And Brilliant Yellow for an Optical Ph
Sensor Polymer, 48, 1455-1458.
Ichinose, I., Muzuki, S., Ohno, S., Shiraishi, H. and
Kunitake, T. 1999. Preparation of Cross-Linked
Ultrathin Films Based on Layer-by-layer Assembly of
Polymers. Polymer Journal, 31, 1065-1070.
Johnston, A. P. R., Cortez, C., Angelatos, A. S. and Caruso,
F. 2006. Layer-By-Layer Engineered Capsules and
Their Applications. Current Opinion In Colloid and
Interface Science, 11, 203-209.
Kotov, N. A., Magonov, S. and Tropsha, E. 1998. Layer-
By-Layer Self-Assembly of Alumosilicate−
Polyelectrolyte Composites: Mechanism of
Deposition, Crack Resistance, and Perspectives for
Novel Membrane Materials. Chemistry of Materials,
10, 886-895.
Lee, D. and Cui, T. 2012 A Role of Silica Nanoparticles In
Layer-by-layer Self-Assembled Carbon Nanotube and
In2o3 Nanoparticle Thin-Film Ph Sensors: Tunable
Sensitivity And Linearity. Sensors and Actuators A:
Physical, 188, 203-211.
Li, Q., Quinn, J. F. and Caruso, F. 2005. Nanoporous
Polymer Thin Films Via Polyelectrolyte Templating.
Advanced Materials, 17, 2058-2062.
Liu, Y. and Cui, T. 2007. Ion-Sensitive Field-Effect
Transistor Based Ph Sensors Using Nano Self-
Assembled Polyelectrolyte/Nanoparticle Multilayer
Films. Sensors And Actuators B 123, 148-152.
Llobet, E. 2013. Gas Sensors Using Carbon Nanomaterials:
A Review. Sensors And Actuators B 179, 32- 45.
Nallathambi, G., Ramachandran, T., Rajendran, V. and
Palanivelu, R. 2011. Effect of Silica Nanoparticles and
Btca on Physical Properties of Cotton Fabrics.
Materials Research, 14, 552-559.
Potapov, V. V., Shitikov, E. S., Trutnev, N. S., Gorbach, V.
A. and Portnyagin, N. N. 2011. Influence of Silica
Nanoparticles on the Strength Characteristics of
Cement Samples. Glass Physics And Chemistry, 37, 98-
105.
Prakash, S., Chakrabarty, T., Singh, A. K. and Shahi, V. K.
2013. Polymer Thin Films Embedded With Metal
Nanoparticles For Electrochemical Biosensors
Applications. Biosensors And Bioelectronics, 41, 43-
53.
Putzbach, W. and Ronkainen, N. 2013. Immobilization
Techniques In The Fabrication Of Nanomaterial-Based
Electrochemical Biosensors: A Review. Sensors, 13,
4811-4840.
Rahman, I. A. and Padavettan, V. 2012. Synthesis of Silica
Nanoparticles by Sol-Gel: Size-Dependent Properties,
Surface Modification, and Applications In Silica-
Polymer Nanocomposites—A Review. Journal of
Nanomaterials, 2012, 1-15.
Raoufi, N., Surre, F., Rajarajan, M., Sun, T. and Grattan, K.
2013. Fibre Optic Ph Sensor Using Optimized Layer-
By-Layer Coating Approach Sensors Journal, Ieee In
Press.
Raoufi, N., Surre, F., Sun, T., Grattan, K. T. V. and
Rajarajan, M. Improvement of Optical Properties of Ph-
Sensitive Nanolayers Coating Deposited Using Layer-
by-layer Technique. Sensors, 2012 Ieee, 28-31 Oct.
2012 2012a. 1-4.
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