Fabrication and Optimization of Mesoporous Platinum Electrodes for CMOS Integrated Enzymeless Glucose Sensor Applications

CMOS 집적회로 기반의 무효소 혈당센서 적용을 위한 메조포러스 백금 전극 제작 및 최적화

  • Seo, Hye-K. (Micro/Nano Devices & Packaging Lab. Department of Electronic Engineering, Kwangwoon University) ;
  • Park, Dae-J. (Micro/Nano Devices & Packaging Lab. Department of Electronic Engineering, Kwangwoon University) ;
  • Park, Jae-Y. (Micro/Nano Devices & Packaging Lab. Department of Electronic Engineering, Kwangwoon University)
  • 서혜경 (마이크로/나노 소자 및 패키징 연구실, 전자공학과, 광운대학교) ;
  • 박대준 (마이크로/나노 소자 및 패키징 연구실, 전자공학과, 광운대학교) ;
  • 박재영 (마이크로/나노 소자 및 패키징 연구실, 전자공학과, 광운대학교)
  • Published : 2006.07.12

Abstract

In this paper, mesoporous only platinum electrode and micro pore platinum electrode with mesoporous Pt are fabricated and characterized on a silicon substrate to check their usability as enzymeless sensing electrodes for developing non-disposable glucose sensors integrated with silicon CMOS read out circuitry. Since most of electrochemical glucose sensors are disposable due to the use of the enzymes that are living creatures, these are limited to use in the in-vivo and continuous monitoring system applications. The proposed mesoporous Pt electrode with approximately 2.5nm in pore diameter and 150nm in height was fabricated by using a nonionic surfactant $C_{16}EO_8$ and an electroplating technique. The micro pore Pt electrode with mesoporous Pt means the mesoporous Pt electrode fabricated on top of micro pore arrayed Pt electrode with approximately $10{\mu}m$ in pore diameter and $80{\mu}m$ in height. The measured current responses at 10mM glucose solution of plane Pt, micro pore Pt, micro pore with mesoporus Pt, and mesoporous Pt electrodes are approximately $9.9nA/mm^2$, $92.4nA/mm^2$, $3320nA/mm^2$ and $44620nA/mm^2$, respectively. These data indicate that the mesoporous Pt electrode is much more sensitive than the other Pt electrodes. Thus, it is promising for non-disposable glucose sensor and electrochemical sensor applications.

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