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UV-Enhanced Room Temperature Ozone Sensor Based on Hierarchical SnO_2-In_2O_3 被引量:1

UV-Enhanced Room Temperature Ozone Sensor Based on Hierarchical SnO_2-In_2O_3
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摘要 SnO2-ln2O3 hierarchical microspheres were prepared by the hydrothermal and solvothermal method. The morphology, phase crystallinity of the obtained SnO2-In203 were measured by X-ray diffraetion(XRD), scan electron microscopy(SEM), respectively. A room temperature ozone sensor based on SnO2-In2O3 hierarchical microspheres was fabricated and investigated. The gas sensing properties of the sensor using SnO2-In2O3 strongly depended on the proportion of SnO2 and In2O3. The sensitivity and response/recovery speed were greatly enhanced by UV illumination. A gas sensing mechanism related to oxygen defect was suggested. SnO2-ln2O3 hierarchical microspheres were prepared by the hydrothermal and solvothermal method. The morphology, phase crystallinity of the obtained SnO2-In203 were measured by X-ray diffraetion(XRD), scan electron microscopy(SEM), respectively. A room temperature ozone sensor based on SnO2-In2O3 hierarchical microspheres was fabricated and investigated. The gas sensing properties of the sensor using SnO2-In2O3 strongly depended on the proportion of SnO2 and In2O3. The sensitivity and response/recovery speed were greatly enhanced by UV illumination. A gas sensing mechanism related to oxygen defect was suggested.
出处 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2012年第3期483-487,共5页 高等学校化学研究(英文版)
基金 Supported by the National Natural Science Foundation of China(Nos.60906036,61074172,61134010) the Program for Changjiang Scholars and Innovative Research Team in Universities of China(No.IRT1017)
关键词 Ozone sensor Hierarchical SnO2-In2O3 UV-Enhanced Room temperature Ozone sensor Hierarchical SnO2-In2O3 UV-Enhanced Room temperature
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  • 1Marco S. L., Jos P., Gianluca L. P., Sep. Purif. Technol., 2010, 72, 235.
  • 2Wang L. P., Chun Y. X., Guo Y. Q., Chen Y. Z., Gao N. Y., J. Env. Sci. Eng., 2009, 3, 6.
  • 3Luigi D. N., Monica M., Federica S., Maria C. T., J. Mater. Sci. Mater. Med., 2010, 21, 2067.
  • 4Cullena P. J., Valdramidis V. P., Tiwari B. K., Patil S., Bourke P., Ozone-Sei. Eng., 2010, 32, 166.
  • 5Selin N. E., Wu S., Nam K. M., Reil J. M., Paltsev S., Mort G. P.. Environ. Res. Lett., 2009, 4, 044014.
  • 6Hosoya Y., ltagaki Y., Aono H., Sadaoka Y., Sens. Actuators B, 2005, 108, 198.
  • 7Yasuko Y. M., Kunihiko A., Nakamura J., Sens. Actuators B, 2010, 143, 487.
  • 8Katsarakis N., Bender M., Cimalla V., Gagaoudakis E., Kiriakidis G., Sens. Actuators B, 2003, 96, 76.
  • 9Epifani M., Comini E., Arbiol J., Pellicer E., Siciliano P., Faglia G., Joan F., J. Phys. Chem. C, 2007, 111, 13967.
  • 10Korostynska O., Arshak K., Hickey G., Forde E., Micro. Techno., 2008, 14, 557.

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