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Monolayer Co3O4 Inverse Opals as Multifunctional Sensors for Volatile Organic Compounds

  • Chul Soon Lee
  • , Zhengfei Dai
  • , Seong Yong Jeong
  • , Chang Hoon Kwak
  • , Bo Young Kim
  • , Do Hong Kim
  • , Ho Won Jang
  • , Joon Shik Park
  • , Jong Heun Lee
  • Korea University
  • Kyoto University
  • Seoul National University
  • Korea Electronics Technology Institute

科研成果: 期刊稿件文章同行评审

50 引用 (Scopus)

摘要

Monolayers of periodic porous Co3O4 inverse opal (IO) thin films for gas-sensor applications were prepared by transferring cobalt-solution-dipped polystyrene (PS) monolayers onto sensor substrates and subsequent removal of the PS template by heat treatment. Monolayer Co3O4 IO thin films having periodic pores (d≈500 nm) showed a high response of 112.9 to 5 ppm C2H5OH at 200 °C with low cross-responses to other interfering gases. Moreover, the selective detection of xylene and methyl benzenes (xylene+toluene) could be achieved simply by tuning the sensor temperature to 250 and 275 °C, respectively, so that multiple gases can be detected with a single chemiresistor. Unprecedentedly high ethanol response and temperature-modulated control of selectivity with respect to ethanol, xylene, and methyl benzenes were attributed to the highly chemiresistive IO nanoarchitecture and to the tuned catalytic promotion of different gas-sensing reactions, respectively. These well-ordered porous nanostructures could have potential in the field of high-performance gas sensors based on p-type oxide semiconductors.

源语言英语
页(从-至)7102-7107
页数6
期刊Chemistry - A European Journal
22
21
DOI
出版状态已出版 - 17 5月 2016
已对外发布

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