화학공학소재연구정보센터
학회 한국재료학회
학술대회 2019년 가을 (10/30 ~ 11/01, 삼척 쏠비치 호텔&리조트)
권호 25권 2호
발표분야 E. 환경/센서 재료 분과
제목 불꽃 화학기상증착 처리에 따른 SnO2 나노선 기반 가스센서의 NO2 가스 감응 특성
초록 A simple yet powerful flame chemical vapor deposition technique is proposed that allows free control of the surface morphology, microstructure, and composition of existing materials with regard to various functionalities within a short process time (in seconds) at room temperature and atmospheric pressure as per the requirement. Since the heat energy is directly transferred to the material surface, the redox periodically converges to the energy dynamic equilibrium depending on the energy injection time; therefore, bidirectional transition between the semiconductor/metal is optionally available. To demonstrate this, a variety of Sn-based particles were created on preformed SnO2 nanowires, and this has been interpreted as a new mechanism for the response and response times of gas-sensing, which are representative indicators of the most surface-sensitive applications and show one-to-one correspondence between theoretical and experimental results. The detailed technologies derived herein are clearly influential in both research and industry.
저자 최선우1, 진창현2
소속 1강원대, 2한양대
키워드 SnO<SUB>2</SUB>; Flame Chemical Vapor Depostion; NO<SUB>2</SUB>; sensing
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