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Facile controlled synthesis of bifunctional ZnO nanoparticles for application as a high-performance self-powered UV photosensor and highly selective vapor sensor
  • Kumar Pandey, Rajiv ;
  • Choi, Hwayong ;
  • Yi, Junsin ;
  • Heo, Junseok ;
  • Kumar Sahu, Praveen
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Publication Year
2023-07-01
Publisher
Elsevier Ltd
Citation
Materials Science and Engineering: B, Vol.293
Keyword
ChemiresistorGas sensorResponsivitySelectivitySelf-powered photosensorsSensing mechanismZnO nanoparticles
Mesh Keyword
Bi-functionalChemiresistorsGas-sensorsPhotosensorResponsivitySelectivitySelf-poweredSelf-powered photosensorSensing mechanismZnO nanoparticles
All Science Classification Codes (ASJC)
Materials Science (all)Condensed Matter PhysicsMechanics of MaterialsMechanical Engineering
Abstract
ZnO has unique multifunctional and morphological properties, and has received significant attention in the field of next-generation sensors and photonic devices. Herein, we report bifunctional ZnO nanoparticles (NPs) used for the selective detection of hazardous gases and self-powered photo response. ZnO nanoparticles with a wurtzite structure and particle size in the range of 10–20 nm were synthesized and fully characterized. ZnO NPs were explored as selective self-powered UV light (370 nm) photosensors and gas sensors. The photoresponse upon illumination with 370-nm light exhibited self-power behavior with an on/off ratio of 1.5x 104, responsivity (R(λ)) of 649 mA/W, external quantum efficiency (EQE) of 217%, and detectivity (D) of 2.4 × 1013 Jones at a bias voltage of 0 V. Maximum sensitivities of 211% and 96% were observed for propanol and chloroform, respectively, among the different gas environments, with quick response, short recovery times, and good repeatability. A possible mechanism has been proposed using the morphology, structural, and electrical characterization results. Thus, our study opens a path for synthesis of multifunctional nanomaterials and their exploration for multiple applications.
ISSN
0921-5107
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/33320
DOI
https://doi.org/10.1016/j.mseb.2023.116470
Fulltext

Type
Article
Funding
This work was supported by the Industrial Strategic Technology Development Program ( 20000300, 20014247 ) funded by the Ministry of Trade, Industry and Energy (MOTIE, Korea).
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