This paper describes a sensor employing a gel formed from an interpenetrating polymer network of poly(vinyl alcohol) and a copolymer of N-isopropylacrylamide and acrylic acid. This gel exhibits a continuous volume-phase transition that is strongly dependent on the presence of polyvalent metal ions in the gel solvent. A sensor apparatus has been constructed that estimates, in real time, the transition temperature of a gel. When this sensor is loaded with a gel sensitive to metal ions, it could be used to detect the presence and identity of metal ions in a solution.
Get full access to this article
View all access options for this article.
References
1.
Hirotsu, S. , Y. Hirokawa and T. Tanaka. 1987. "Volume-Phase Transitions of Ionized N-isopropylacrylamide Gels", Journal of Chemistry and Physics, 87(2): 1392-1395.
2.
Jackson, D. , S. Leeb, A. Mitwalli, P. Narvaez, D. Fusco and E. Lupton. 1997. "Power Electronic Drives for Magnetically Triggered Gels", IEEE Transactions on Industrial Electronics, 44(2):217-225.
3.
Suzuki, A. and T. Tanaka. 1990. "Phase Transition in Polymer Gels Induced by Visible Light", Nature, 346(6282):345-347.