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Ultrasensitive ethanol sensor based on segregated ZnO-In2O3 porous nanosheets
Yan, W; Chen, Y; Zeng, X; Wu, G; Jiang, W; Wei, D; Ling, M; Ng, K. W.; Qin, Y
2021
Source PublicationApplied Surface Science
ISSN0169-4332
Pages147697-147697
Abstract

ZnO nanosheets exhibit notably interesting gas sensing performances due to their great carrier transport and high special surface area. However, not only the 2D nanosheets tend to stack suppressing the surface area, but also the pristine ZnO cannot show desired ethanol sensing properties. Herein, segregated ZnO-In2O3 porous nanosheets are synthesized facilely via one-pot solvothermal method. The Indium doping stems the porous nanosheets stacking, as well as induces lots of heterojunctions. Due to the specific porous structure for high gas accessibility, thickness less than double Debye length, abundant reaction sites and heterojunctions, the segregated ZnO-In2O3 nanosheets exhibit remarkable ethanol sensing performance (LOD of 100 ppb, response/recovery time of 3/8 s, and great repeatability and selectivity under natural humidity for a long period). This study provides a prospect for practical applications of ZnO-In2O3 ethanol sensors.

KeywordZno-in2o3 Heterojunction Ethanol Sensor Chemi-resistive
DOI10.1016/j.apsusc.2020.147697
URLView the original
Language英語English
The Source to ArticlePB_Publication
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Document TypeJournal article
CollectionINSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Corresponding AuthorYan, W; Qin, Y
Recommended Citation
GB/T 7714
Yan, W,Chen, Y,Zeng, X,et al. Ultrasensitive ethanol sensor based on segregated ZnO-In2O3 porous nanosheets[J]. Applied Surface Science, 2021, 147697-147697.
APA Yan, W., Chen, Y., Zeng, X., Wu, G., Jiang, W., Wei, D., Ling, M., Ng, K. W.., & Qin, Y (2021). Ultrasensitive ethanol sensor based on segregated ZnO-In2O3 porous nanosheets. Applied Surface Science, 147697-147697.
MLA Yan, W,et al."Ultrasensitive ethanol sensor based on segregated ZnO-In2O3 porous nanosheets".Applied Surface Science (2021):147697-147697.
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