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New Design of ZnO Nanorod- and Nanowire-Based NO2 Room-Temperature Sensors Prepared by Hydrothermal Method
被引:19
|作者:
Vo Thanh Duoc
[1
]
Dang Thi Thanh Le
[1
]
Nguyen Duc Hoa
[1
]
Nguyen Van Duy
[1
]
Chu Manh Hung
[1
]
Hugo Nguyen
[2
]
Nguyen Van Hieu
[3
,4
]
机构:
[1] Hanoi Univ Sci & Technol HUST, Int Training Inst Mat Sci ITIMS, 1 Dai Co Viet Str, Hanoi, Vietnam
[2] Uppsala Univ, Dept Engn Sci, Lagerhyddsvagen 1, S-75121 Uppsala, Sweden
[3] Phenikaa Univ, Thanh Tay Inst Adv Study TIAS, Hanoi 100000, Vietnam
[4] A&A Green Phoenix Grp, Phenikaa Res & Technol Inst PRATI, 167 Hoang Ngan, Hanoi 100000, Vietnam
关键词:
D O I:
10.1155/2019/6821937
中图分类号:
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
Room-temperature gas sensors are attracting attention because of their low power consumption, safe operation, and long-term stability. Herein, ZnO nanorods (NRs) and nanowires (NWs) were on-chip grown via a facile hydrothermal method and used for room-temperature NO2 gas sensor applications. The ZnO NRs were obtained by a one-step hydrothermal process, whereas the NWs were obtained by a two-step hydrothermal process. To obtain ZnO NW sensor, the length of NRs was controlled short enough so that none of the nanorod-nanorod junction was made. Thereafter, the NWs were grown from the tips of no-contact NRs to form nanowire-nanowire junctions. The gas-sensing characteristics of ZnO NRs and NWs were tested against NO2 gas at room temperature for comparison. The gas-sensing characteristics of the sensors were also tested at different applied voltages to evaluate the effect of the self-activated gas-sensing performance. Results show that the diameter of ZnO NRs and NWs is the dominant parameter of their NO2 gas-sensing performance at room temperature. In addition, self-activation by local heating occurred for both sensors, but because the NWs were smaller and sparser than the NRs, local heating thus required a lower applied voltage with maximal response compared with the NRs.
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页数:9
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