| Literature DB >> 31075817 |
Wei Li1,2, Linlin Wang3, Yun Cai4, Peifeng Pan5, Jinze Li6, Qingying Ren7, Jie Xu8.
Abstract
In this work, a silicon nanopillar array was created with nanosphere lithography. SnO2 film was deposited on this nanostructure by magnetron sputtering to form an SnO2/silicon nanopillar array sensor. The humidity sensitivity, response time, and recovery time were all measured at room temperature (25 °C) with UV or without UV irradiation. As a result, the humidity sensitivity properties were improved by enlarging the specific surface area with ordered nanopillars and irradiating with UV light. These results indicate that nanostructure sensors have potential applications in the field of sensors.Entities:
Keywords: SnO2 film; UV light; humidity sensing; silicon nanopillar array
Year: 2019 PMID: 31075817 PMCID: PMC6539979 DOI: 10.3390/s19092141
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1(a) Scanning electron microscopy (SEM) image of the ordered polystyrene (PS) sphere array. (b) SEM image of the silicon nanopillar array. (c) SEM image of the silicon nanopillar array with SnO2. (d) Atomic force microscopy (AFM) image of the silicon nanopillar array with SnO2.
Figure 2X-ray diffraction patterns of SnO2.
Figure 3Humidity response curves measured under four frequencies: (a) 50 Hz, (b) 200 Hz, (c) 1 kHz, (d) 5 kHz.
Figure 4The humidity responses with and without UV. The inset illustrates the schematic diagram of the SnO2/silicon nanopillar array sensor with UV light.
The humidity responses with and without UV.
| 11% RH | 34% RH | 56% RH | 75% RH | 90% RH | |
|---|---|---|---|---|---|
| Without UV Response | 1 | 2.3 | 4.8 | 7.3 | 10.1 |
| With UV Response | 1.2 | 3.5 | 8.6 | 10.8 | 15.4 |
| Response Increase | 20% | 52% | 58% | 48% | 52% |
Figure 5The UV-activated humidity sensing mechanism of the silicon nanopillar array sensor.
Figure 6The energy band diagram of the nanostructure of SnO2/Si.
Figure 7The response and recovery times under RH = 90%.
Figure 8(a) The response time of the SnO2/silicon nanopillar array sensor. (b) The recovery time of the SnO2/silicon nanopillar array sensor.
The performances of humidity sensors from this work and other reports.
| Materials | RH | Sensitivity | Response | Recovery | Reference |
|---|---|---|---|---|---|
| SnO2/silicon nanopillar array | 90% | 16 | 19 | 180 | This work |
| SnO2 | 95% | ~2 | 26 | 45 | [ |
| SnWO4-SnO2 | 90% | ~4 | 30 | 100 | [ |
| MoS2/Si | 90% | 3 | 36.3 | 57.6 | [ |
| Graphene | 84% | 2 | 180 | 180 | [ |