DocumentCode :
977982
Title :
Fully Packaged Nonenzymatic Glucose Microsensors With Nanoporous Platinum Electrodes for Anti-Fouling
Author :
Lee, Yi Jae ; Park, Dae Joon ; Park, Jae Yeong
Author_Institution :
Dept. of Electron. Eng., Kwangwoon Univ., Seoul
Volume :
8
Issue :
11
fYear :
2008
Firstpage :
1922
Lastpage :
1927
Abstract :
CMOS integrable nonenzymatic glucose microsensors with nanoporous platinum (Pt) working and counter electrode (WE/CE) were first fabricated, packaged, and characterized with biocompatible Nafion and hydrophilic polyurethane (HPU) membrane materials. Optimal packaging material and its processing condition for these nonenzymatic sensors were investigated. The optimally packaged glucose microsensor was evaluated in human blood plasma solution for checking its biocompatibility and commercial applicability. The fabricated microsensors with nanoporous Pt WE/CE had a sensitivity of 7.75 muA mM -1 cm -2. The packaged microsensor with Nafion membrane had better performance characteristics than packaged one with HPU. The packaged microsensor with 1:6 ratio of Nafion to ethanol exhibited a sensitivity of 0.83 mu A mM-1 cm-2 and stable current change in the human blood plasma solution, while the current response of nonpackaged microsensor was rapidly saturated because adsorption of various proteins and cells as expected. These data indicate that the packaged nonenzymatic microsensor with biocompatible Nafion membrane is promising and strongly applicable for in vitro and in vivo glucose monitoring systems.
Keywords :
CMOS integrated circuits; adsorption; biochemistry; biomembranes; blood; cellular biophysics; electrochemical electrodes; electrochemical sensors; microsensors; nanoporous materials; packaging; patient monitoring; platinum; proteins; CMOS integrable microsensors; Pt; adsorption; antifouling; biocompatible Nafion; biocompatible membrane materials; biological cells; counter electrode; fully packaged glucose microsensors; human blood plasma solution; hydrophilic membrane materials; in vitro glucose monitoring; in vivo glucose monitoring; nanoporous platinum; nanoporous platinum electrodes; nonenzymatic glucose microsensors; nonenzymatic sensors; polyurethane membrane materials; proteins; Biological materials; Biomembranes; Blood; Electrodes; Humans; Microsensors; Nanoporous materials; Packaging; Platinum; Sugar; Biocompatible; Nafion; glucose sensor; human plasma; hydrophilic polyurethane (HPU); nanoporous platinum; nonenzymatic; packaging;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2008.2006697
Filename :
4666731
Link To Document :
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