Novel growth of CuO-functionalized, branched SnO2 nanowires and their application to H2S sensors

  • Kim, Sang Sub
  • Na, Han Gil
  • Choi, Sun-Woo
  • Kwak, Dong Sub
  • Kim, Hyoun Woo
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초록

A novel growth method for CuO-functionalized, branched tin oxide (SnO2) nanowires was developed on the basis of a Cu-triggered tip-growth vapour-liquid-solid (VLS) process during annealing of Cu-coated SnO2 nanowires. The variation in annealing temperature changed the morphology, in which higher temperatures (>= 500 degrees C) are favourable for the formation of branches. From the observation of tip nanoparticles, we revealed that the growth of branches at 500 and 700 degrees C was dominated by base-growth and tip-growth VLS processes, respectively. The tip nanoparticles at 700 degrees C were mainly comprised of a CuO phase. We have demonstrated the potential applicability of the CuO-functionalized, branched SnO2 nanowires to H2S sensors. CuO functionalization significantly enhanced the response to H2S. In sharp contrast, it degraded the response to NO2, suggesting their selective sensing performance to H2S.

키워드

SOLUTION-BASED STRAIGHTSENSITIZED SOLAR-CELLSZNO NANOWIRESGAS SENSORSFABRICATIONNANOPARTICLESFILMSCDS
제목
Novel growth of CuO-functionalized, branched SnO2 nanowires and their application to H2S sensors
저자
Kim, Sang SubNa, Han GilChoi, Sun-WooKwak, Dong SubKim, Hyoun Woo
DOI
10.1088/0022-3727/45/20/205301
발행일
2012-05
유형
Article
저널명
Journal of Physics D: Applied Physics
45
20
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