The development of intelligent polymeric materials is a multidimensional task. It requires the design of processing systems that retain dynamic properties meaning that the material produced is inherently "unstable". It also requires the design of communication tools that can be used to study, manipulate and control this dynamic character so as predictable, intelligent behaviour can be coaxed from these "unstable" systems.
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References
1.
Adejoju, S. B. , S. J. Shaw and G. G. Wallace. 1993. "Polypyrrole-Based Potentiometric Biosensor for Urea, Part 2: Analytical Optimisation", 281:621-627.
2.
Adeloju, S. B. , S. J. Shaw and G. G. Wallace. 1993. "Polypyrrole-Based Potentiometric Biosensor for Urea. Part 1: Incorporation of Urease", Anal. Chim. Acta.281:611-620.
3.
Aldissi, M. and S. P. Armes. 1991. "Colloidal Dispersions of Conducting Polymers"' Prog. Org. Coatins19:21-58.
4.
Aoki, T. , K. J. Gilmore, A. J. Hodgson, I. Mac Kenzie, N. Ogata, and G. G. Wallace. In press. "Mammalian Cell Differentiation on Conducting Electroactive Polymer Materials"'Mat. Chem.
5.
Eisazadeh, H. , G. Spinks and G. G. Wallace. 1992. "Electrochemical Properties of Conductive Electroactive Polymeric Colloids", Mat. Forum.16:341-344.
6.
Eisazadeh, H. , G. Spinks and G. G. Wallace. 1993. "Conductive Electroactive Paint Containing Polypyrrole Colloids", Materials Forum142:18-18.
7.
Eisazadeh, H. , G. Spinks and G. G. Wallace. 1994. "Electrochemical Production of Conducting Electroactive Polymer Colloids", submitted for publication in Polymer.
8.
Fletcher, S. , R. John, A. Talaie and G. G. Wallace. 1991. "Characterisation of Conductive Electroactive Polymers Using Resistometry", J. Electroanal. Chem.319:365-371.
9.
Ge, H. , G. G. Wallace and J. Zhang. 1992. "Use of Overoxidised Polypyrrole as a Chromium (VI) Sensor", Anal. Lett.25:429-441.
10.
Gilmore, K. J. , A. J. Hodgson, C. Small and G. G. Wallace. In press. "Electrochemical Preparation of Conducting Polymer-Hydrogel Composites", Polymer Gels and Networks.
11.
Hodgson, A. J. , T. W. Lewis, K. M. Maxwell, M. J. Spencer and G. G. Wallace. 1990. "New Conducting Polymer Affinity Chromatography Phases', J. Liq. Chrom.237:149-153.
12.
Hodgson, A. J. , M. J. Spencer and G. G. Wallace. 1992. "Incorporation of Proteins into Conducting Electroactive Polymers", React. Polym.18:77-85.
13.
John, R. , R. Mirmohseni, P. R. Teasdale and G. G. Wallace. 1993. "Interfacial Analysis Techniques for the Study and Characterisation of Advanced",?? 12, 95-108.
14.
John, R. and G. G. Wallace. 1991. "The Use of Microelectrodes to Probe the Electropolymerisation Mechanism of Heterocyclic Conducting Polymers", J. Electroanal. Chem.157-164.
15.
Kane-Maguire. L. A. P. , R. Majidi and G. G. Wallace. In press. "Enantioselective Electropolymerisation of Aniline in the Presence of (+)-or (-)-Camphor Sulfonate Ion Facile Route to Conducting Polymers with Preferred One-Screw-Helicity", Polymer.
16.
Kiani, M. S. , N. V. Bhat, F. J. Davis and G. R. Mitchell. 1992. "Highly Anisotropic Electrically Conducting Films Based on Polypyrrole", Polymer33:4113-4120.
17.
Lin, Y. and G. G. Wallace. In press. "Electropolymerisation of Conducting Polymers under Hydrodynamic Conditions. Effect of Solution Additives"'Electrochim. Acta.
18.
Mirmohseni, A. , W. E. Price, G. G. Wallace and H. Zhao. 1993. "Adaptive Membrane Systems Based on Conductive Electroactive Polymers", J. Int. Mat. Syst. Struct.4:43-49.
19.
Rueda, D. R. , C. Arribas, F. J. Calleja and J. M. Palacios. 1992. "Polypyrrole Grown at the Surface of Sulfonated Polyethylene Films. Electrical Conductivity and Stability"' Synth. Met.52:101-109.
20.
Sadik, O. and G. G. Wallace. 1993. "Pulsed Amperometric Detection of Proteins-Using Antibody Containing Conducting Polymers", Anal. Chim. Acta279:209-212.
21.
Sadik, 0. A. 1994. "New Sensing Techniques Using Conducting Electroactive Polymers", PhD Thesis, University of Wollongong.
22.
Sadik, O. A. and G. G. Wallace. 1993a"Effect of Polymer Composition on the Detection of Electroinactive Species Using Conductive Polymers", Electroanalysis5:555-563.
23.
Talaie, A. and G. G. Wallace. In press. "Characterisation of Conducting Polymer-Solution Interfacial Processing a New Electrochemical Method"'Interfaces.
24.
Teasdale, P. R. and G. G. Wallace. In press. "Characterisation of Conducting Polymers by Measuring Dynamic Contact Angle Analysis with the Wilhamy's Plate Technique", Reactive Polymer.
25.
Teasdale, P. R. and G. G. Wallace. 1994. "Characterising the Chemical Interactions that Occur on Polyaniline with Inverse Thin Layer Chromatography", Polymer International35:197-205.
26.
Wang, H. L. and J. E. Fernandez. 1992. "Conducting Polymer Blends. Polypyrrole and Poly(Vinyl Methyl Ketane), Macromolecules25: 6179-6184.
27.
Wang, H. L. and J. E. Fernandez. 1993. "Blends of Polypyrrole and Poly(Vinylalcohol)", Macromolecules26:3335-3339.