회전 수열합성법을 이용한 산화아연 다공성 나노로드 합성 및 이를 이용한 H2S 가스 센싱

Enhanced H2S Gas Sensing Using ZnO Porous Nanorod Synthesized via a Rotational Hydrothermal Method
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  • 김찬규; 
  • 김민서; 
  • 신지연; 
  • 이재형; 
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초록

In this study, ZnO porous nanorods were synthesised using a rotational hydrothermal process, and their performance as hydrogen sulphide (H2S) gas sensors was analysed. Compared to commercial ZnO nanoparticles and conventionally hydrothermally synthesised ZnO nanorods, the ZnO porous nanorods exhibited a more uniform structure and improved crystal growth in the (002) plane, with surfaces rich in porosity and oxygen vacancies. These structural and chemical characteristics significantly improved the sensitivity toward H2S, showing high detection performance at 250°C across various concentrations of H2S gas. Additionally, the sensor demonstrated excellent selectivity against other gases such as C2H5OH, C6H6, C7H8, and NH3. This study indicated that the rotational hydrothermal process is an effective method for developing high-performance ZnO-based gas sensors and suggests its applicability to other metal oxide materials.

키워드

Metal oxide; Rotational hydrothermal; ZnO porous nanorod; Nano materials; Gas sensor
제목
회전 수열합성법을 이용한 산화아연 다공성 나노로드 합성 및 이를 이용한 H2S 가스 센싱
제목 (타언어)
Enhanced H2S Gas Sensing Using ZnO Porous Nanorod Synthesized via a Rotational Hydrothermal Method
저자
박지명; 김찬규; 김민서; 신지연; 이재형; 최명식
DOI
10.4150/jpm.2025.00262
발행일
2025-10
유형
Y
저널명
한국분말재료학회지
권
32
호
5
페이지
406 ~ 415