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Ultrasensitive detection of xylene gas by cauliflower-like Au-TiO2 core-shell nanoparticles
- Kim, Hyeong Min;
- Shin, Ka Yoon;
- Mirzaei, Ali;
- Oum, Wansik;
- Kim, Eun Bi;
- ... Kim, Sang Sub;
- 외 3명
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18SCOPUS
18초록
TiO2 nanoparticles (NPs) and Au-TiO2 core-shell NPs (C-S NPs) were synthesized for xylene gas detection. Morphological, phase, and chemical studies demonstrated the successful generation of Au-TiO2 C-S NPs with a cauliflower-like morphology and desired composition. Also, the surface area of TiO2 NPs was 8.46, which increased to 23.88 m(2)/g for Au-TiO2 C-S NPs, due to the creation of a porous TiO2 shell around the Au core. The response of the TiO2 NPs to 50 ppm xylene was 14.19 at 500 degrees C, while it increased to 165.77 at a lower temperature (450 degrees C). Furthermore, while the TiO2 NPs gas sensor has no selectivity to xylene gas, the TiO2 C-S NP gas sensor exhibited excellent selectivity. Overall, incorporation of Au in TiO2 in the form of a C-S structure improved the performance of the sensor to sense xylene. Improved xylene sensing for the TiO2 C-S NPs stemmed from the high surface area and porous nature, oxygen defects, and formation of Au-TiO2 Schottky barriers. This research demonstrates the development of high-output xylene sensors by means of Au-TiO2 with a C-S structure.
키워드
- 제목
- Ultrasensitive detection of xylene gas by cauliflower-like Au-TiO2 core-shell nanoparticles
- 저자
- Kim, Hyeong Min; Shin, Ka Yoon; Mirzaei, Ali; Oum, Wansik; Kim, Eun Bi; Moon, Sungjoon; Bharath, Somalapura Prakasha; Kim, Sang Sub; Kim, Hyoun Woo
- 발행일
- 2024-08-01
- 유형
- Article
- 권
- 412