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dc.contributor.advisorNguyen, Ngoc Viet-
dc.contributor.advisorLe, Viet Thong-
dc.contributor.advisorChu, Manh Hung-
dc.contributor.advisorNguyen, Duc Hoa-
dc.contributor.advisorNguyen, Van Duy-
dc.contributor.advisorHoang, Si Hong-
dc.contributor.advisorNguyen, Van Hieu-
dc.contributor.authorPhan, Hong Phuoc-
dc.date.accessioned2021-07-05T05:06:03Z-
dc.date.available2021-07-05T05:06:03Z-
dc.date.issued2021-
dc.identifier.urihttps://www.sciencedirect.com/science/article/abs/pii/S092540052100174X?via%3Dihub-
dc.identifier.urihttps://dlib.phenikaa-uni.edu.vn/handle/PNK/1927-
dc.descriptionQ1vi
dc.description.abstractThe design of hetero-nanojunctions can greatly amplify the gas-sensing performance of conventional metal oxide gas sensors. In this study, the composite nanofibers (NFs) of ZnO–SnO2 internal heterojunctions (HJs) and the mixed NFs of ZnO/SnO2 external HJs were realized by using the electrospinning technique. Then, the gas-sensing characteristics of the as-synthesized NFs toward H2S and NO2 gases were systematically investigated and compared. The effects of the internal and external nanojunctions of the hetero-NF-based gas sensors were also explored. Results showed that the ZnO–SnO2 composite NFs demonstrate a higher response than those of the ZnO/SnO2 mixed NFs, as well as bare ZnO and SnO2 NFs. Also, the cross responses of the hetero-NF sensors toward 200 ppm CO, 250 ppm H2, and 250 ppm NH3 were examined. The gas-sensing mechanism of the internal and external HJs of composite ZnO/SnO2 and mixed ZnO/SnO2 NFs was analyzed. The remarkable enhanced gas-sensing performance of hetero-NFs was mainly attributed to the formation of internal HJs.vi
dc.language.isoenvi
dc.publisherSensors and Actuators B: Chemicalvi
dc.subjectZnO/SnO2vi
dc.subjectComposite nanofibersvi
dc.subjectMixed nanofibersvi
dc.subjectNano-junctionvi
dc.titleComparative study on the gas-sensing performance of ZnO/SnO2 external and ZnO–SnO2 internal heterojunctions for ppb H2S and NO2 gases detectionvi
dc.typeArticlevi
eperson.identifier.doi10.1016/j.snb.2021.129606-
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