| Literature DB >> 29053624 |
Wei Li1,2, Juyan Liu3, Chao Ding4, Gang Bai5, Jie Xu6, Qingying Ren7, Jinze Li8.
Abstract
Ordered SnO₂ nanostructures were prepared as humidity sensors by nanosphere lithography with the magnetron sputtering technique. The X-ray diffraction patterns of SnO₂ nanostructures show that all intense diffraction peaks correspond to the crystallographic planes of SnO₂. The Atomic Force Microscope (AFM) mage shows that these SnO₂ nanostructures exhibited a classic honeycomb structure. The resistance of this sensor was measured to show that the resistance of the sensor decreases with an increase from lower relative humidity (RH) to higher RH. Additionally, the longest response/recovery time was 32 s/42 s for 11-96% RH. The hysteresis for the SnO₂ nanostructure sensor was <5%.Entities:
Keywords: SnO2 nanostructure; humidity sensor; nanosphere lithography
Year: 2017 PMID: 29053624 PMCID: PMC5677237 DOI: 10.3390/s17102392
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1The schematics of the procedure for fabricating the SnO2 nanostructure. (a) A monolayer of polystyrene nanosphere was fabricated on Si substrate by self-assembly. (b) The nanospheres were etching by O2. (c)The SnO2 was sputtering. (d) The nanospheres were removed. (e) The fork-shaped electrodes were prepared by electron-beam evaporation.
Figure 2The XRD patterns of SnO2 nanostructure film. (a) The SnO2 after thermal annealing; (b) as-deposited.
Figure 3(a)The AFM image of SnO2 nanostructure. (b)The section analysis of SnO2 nanostructure.
Figure 4Plot of resistance response of SnO2 nanostructures with humidity from 11% to 96% (a), and from 96% to 11% (b). (c) The R-V curves of the SnO2 nanostructure with different RHs.
Figure 5The relation between sensitivity and relative humidity with nanostructure and plane substrate.
Figure 6Response/recovery time of the SnO2 nanostructure sensor from 11% RH to 96% RH.
The response/recovery time of the SnO2 nanostructure sensor.
| RH | 11–33% | 11–54% | 11–75% | 11–84% | 11–96% |
|---|---|---|---|---|---|
| Response time (s) | 18 | 25 | 30 | 31 | 32 |
| Recovery time (s) | 25 | 33 | 39 | 40 | 42 |
Figure 7The hysteresis curve showing adsorption/desorption responses.