화학공학소재연구정보센터
학회 한국재료학회
학술대회 2015년 가을 (11/25 ~ 11/27, 부산 해운대그랜드호텔)
권호 21권 2호
발표분야 E. 환경/센서 재료
제목 SnO2 (n)−Cu2O (p) 코어-셀 나노선의 센싱 거동에 대한 메커니즘 연구
초록 We report the synthesis of SnO2−Cu2O n−p core−shell nanowires (C−S NWs) and their use as chemiresistive sensors for detecting trace amounts of gas. The n−p C−S NWs were synthesized by a two-step process, in which the core SnO2 nanowires were prepared by the vapor growth technique and subsequently the Cu2O shell layers were deposited by atomic layer deposition. A systematic investigation of the sensing capabilities of the n−p C−S NWs, particularly as a function of shell thickness, revealed the underlying sensing mechanism. The radial modulation of the hole-accumulation layer is intensified under shells thinner than the Debye length. On the other hand, the contribution of volume fraction to resistance modulation is weakened. By the combination of these two effects, an optimal sensing performance for reducing gases is obtained for a critical p-shell thickness. In contrast, the formation of p-shell layers deteriorates the NO2-sensing performance by blocking the expansion of the hole-accumulation layer due to the presence of p−n heterointerface.
저자 김수현1, 김상섭2, 김재훈2, 정일방2
소속 1영남대, 2인하대
키워드 SnO<SUB>2</SUB>−Cu<SUB>2</SUB>O; core−shell; nanowires; p−n junction; sensing mechanism
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