Real-Time Tunable Gas Sensing Platform Based on SnO2 Nanoparticles Activated by Blue Micro-Light-Emitting Diodes

  • Nam, Gi Baek
  • Ryu, Jung-El
  • Eom, Tae Hoon
  • Kim, Seung Ju
  • Suh, Jun Min
  • 외 23명
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초록

Micro-light-emitting diodes (μLEDs) have gained significant interest as an activation source for gas sensors owing to their advantages, including room temperature operation and low power consumption. However, despite these benefits, challenges still exist such as a limited range of detectable gases and slow response. In this study, we present a blue μLED-integrated light-activated gas sensor array based on SnO2 nanoparticles (NPs) that exhibit excellent sensitivity, tunable selectivity, and rapid detection with micro-watt level power consumption. The optimal power for μLED is observed at the highest gas response, supported by finite-difference time-domain simulation. Additionally, we first report the visible light-activated selective detection of reducing gases using noble metal-decorated SnO2 NPs. The noble metals induce catalytic interaction with reducing gases, clearly distinguishing NH3, H2, and C2H5OH. Real-time gas monitoring based on a fully hardware-implemented light-activated sensing array was demonstrated, opening up new avenues for advancements in light-activated electronic nose technologies. (Figure presented.). © The Author(s) 2024.

키워드

Gas sensor arrayLow power consumptionMetal decorationMicro-LEDReal-time detectionROOM-TEMPERATUREOHMIC CONTACTSENSORSNI/AUMECHANISMOXIDATIONMICELLESOXIDESTIO2
제목
Real-Time Tunable Gas Sensing Platform Based on SnO2 Nanoparticles Activated by Blue Micro-Light-Emitting Diodes
저자
Nam, Gi BaekRyu, Jung-ElEom, Tae HoonKim, Seung JuSuh, Jun MinLee, SeungminChoi, SungkyunMoon, Cheon WooPark, Seon JuLee, Soo MinKim, ByungsooPark, Sung HyukYang, Jin WookMin, SangjinPark, SohyeonCho, Sung HwanKim, Hyuk JinJun, Sang EonLee, Tae HyungKim, Yeong JaeKim, Jae YoungHong, Young JoonShim, Jong-InByun, Hyung-GiPark, YongjoPark, InkyuRyu, Sang-WanJang, Ho Won
DOI
10.1007/s40820-024-01486-2
발행일
2024-12
유형
Article
저널명
Nano-Micro Letters
16
1
페이지
1 ~ 17