Journal Article PUBDB-2023-06260

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Room-Temperature Triethylamine Sensor Based on Reduced Graphene Oxide/CeO$_2$ Nanocomposites

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2023
ACS Publications Washington, DC

ACS applied nano materials 6(10), 9041 - 9049 () [10.1021/acsanm.3c01734]
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Abstract: Triethylamine (TEA) detection has been widely performed by using chemoresistive sensors. Nevertheless, chemoresistive sensors still exhibit limitations to be addressed in terms of power consumption and humidity interference, and developing efficient TEA sensors operated at low temperatures and humid conditions remains a challenge. Here, we present the effect of reduced graphene oxide (RGO) on the TEA-sensing performance of CeO$_2$ nanospheres at room temperature and a relative humidity (RH) range of 34–70%. We show that CeO$_2$ is a suitable sensing material for TEA detection at room temperature and humidity conditions; however, the modification with RGO greatly improves the TEA-sensing performance. The RGO/CeO$_2$ nanocomposite has higher sensitivity and selectivity to TEA than the bare CeO$_2$-based sensor, in addition to the low theoretical detection limit of 1 ppm at 70% RH. Moreover, we elucidate that humidity plays a positive role in the detection of TEA. Our findings elucidate that RGO positively affects the sensing performance of CeO$_2$ nanospheres, which can be attributed to the improvements in the baseline electrical resistance and enhancement of the active sites for TEA adsorption due to the RGO modification. This work provides a promising strategy for developing sensitive TEA sensors with practical applications.

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Note: Copyright © 2023 American Chemical Society Non-open access journal

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  1. DOOR-User (DOOR ; HAS-User)
Research Program(s):
  1. 6G3 - PETRA III (DESY) (POF4-6G3) (POF4-6G3)
Experiment(s):
  1. PETRA Beamline P07 (PETRA III)

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 Record created 2023-10-18, last modified 2025-07-24


Published on 2023-05-17. Available in OpenAccess from 2024-05-17.:
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