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Selective Oxidizing Gas Sensing and Dominant Sensing Mechanism of n-CaO-Decorated n-ZnO Nanorod Sensors
- Sun, Gun-Joo;
- Lee, Jae Kyung;
- Choi, Seungbok;
- Lee, Wan In;
- Kim, Hyoun Woo;
- 외 1명
WEB OF SCIENCE
73SCOPUS
79초록
In this work, we investigated the NO₂ and CO sensing, properties of n-CaO-decorated n-ZnO nanorods and the dominant sensing mechanism in n-n heterostructured one-dimensional (1D) nanostructured multinetworked chem-iresistive gas sensors utilizing the nanorods. The CaO-decorated n-ZnO nanorods showed stronger response to NO₂ than most other ZnO-based nanostructures, including the, pristine ZnO nanorods. Many researchers have attributed the enhanced sensing, performance of heterostructured sensors to the modulation of the conduction channel-width or surface depletion layer width. However, the modulation of the conduction channel width is not the true cause of the enhanced sensing performance of n n heterostructured 1D gas sensors, because the radial modulation of the conduction channel width is not intensified in these-sensors. In this work, we demonstrate that the enhanced performance of the n-CaO-decorated n-ZnO nanorod sensor is mainly due to a combination of the enhanced modulation of the potential barrier height at the n n heterojunctions, the larger surface-area-to-volume ratio and the increased surface defect density of the decorated ZnO nanorods, not the enhanced modulation of the conduction channel width.
키워드
- 제목
- Selective Oxidizing Gas Sensing and Dominant Sensing Mechanism of n-CaO-Decorated n-ZnO Nanorod Sensors
- 저자
- Sun, Gun-Joo; Lee, Jae Kyung; Choi, Seungbok; Lee, Wan In; Kim, Hyoun Woo; Lee, Chongmu
- 발행일
- 2017-03
- 유형
- Article
- 권
- 9
- 호
- 11
- 페이지
- 9975 ~ 9985