Comparison of Characteristics of a ZnO Gas Sensor Using a Low-Dimensional Carbon Allotrope

  • Lee, Jihoon; 
  • Park, Jaebum; 
  • Huh, Jeung-Soo
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초록

Owing to the increasing construction of new buildings, the increase in the emission of formaldehyde and volatile organic compounds, which are emitted as indoor air pollutants, is causing adverse effects on the human body, including life-threatening diseases such as cancer. A gas sensor was fabricated and used to measure and monitor this phenomenon. An alumina substrate with Au, Pt, and Zn layers formed on the electrode was used for the gas sensor fabrication, which was then classified into two types, A and B, representing the graphene spin coating before and after the heat treatment, respectively. Ultrasonication was performed in a 0.01 M aqueous solution, and the variation in the sensing accuracy of the target gas with the operating temperature and conditions was investigated. As a result, compared to the ZnO sensor showing excellent sensing characteristics at 350 degrees C, it exhibited excellent sensing characteristics even at a low temperature of 150 degrees C, 200 degrees C, and 250 degrees C.

키워드

gas sensor; ZnO; graphene; carbonnanotube; formaldehyde; GRAPHENE
제목
Comparison of Characteristics of a ZnO Gas Sensor Using a Low-Dimensional Carbon Allotrope
저자
Lee, Jihoon; Park, Jaebum; Huh, Jeung-Soo
DOI
10.3390/s23010052
발행일
2023-01
유형
Article
저널명
Sensors
권
23
호
1