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Advanced Recovery and High-Sensitive Properties of Memristor-Based Gas Sensor Devices Operated at Room Temperature

Authors
Lee, D.Yun, M.J.Kim, K.H.Kim, S.Kim, H.-D.
Issue Date
2021
Publisher
American Chemical Society
Keywords
conductive filaments; gas sensor; memristor; recovery; sensitivity
Citation
ACS Sensors, v.6, no.11, pp.4217 - 4224
Indexed
SCIE
SCOPUS
Journal Title
ACS Sensors
Volume
6
Number
11
Start Page
4217
End Page
4224
URI
https://scholarworks.bwise.kr/gnu/handle/sw.gnu/5664
DOI
10.1021/acssensors.1c01840
ISSN
2379-3694
Abstract
Fast recovery, high sensitivity, high selectivity, and room temperature (RT) sensing characteristics of NO gas sensors are essential for environmental monitoring, artificial intelligence, and inflammatory diagnosis of asthma patients. However, the conventional semiconductor-type gas sensors have poor sensing characteristics that need to be solved, such as slow recovery speeds (>360 s), low sensitivity (3.8), and high operating temperatures (>300 °C). We propose here a memristor-based NO gas sensor as a gasistor (gas sensor + memory resistor) with SnO2, Ta2O5, and HfO2 films, which successfully demonstrated the feasibility of fast reaction/recovery (<1 s/90 ns) and high sensitivities such as 11.66 and 5.22 in Ta2O5 and HfO2 gasistors for NO gas, at RT. Furthermore, so as to reinforce the selectivity in multigas ambient, we suggest a parallel circuit using three kinds of gasistors having different sensitivities for NO, O2, and C2H6 gases, which results in an improvement of selectivity for the selected gas at RT. ? 2021 American Chemical Society.
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Kim, Kyeong Heon
융합기술공과대학 (융합전자공학부)
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