共 14 条
- [1] (2001)
- [2] Phani A.R., Manorama S., Rao V.J., The nature of surface behavior of tin oxide doped sensors: X-ray photoelectron spectroscopy studies before and after exposure to liquid petroleum gas, Journal of Physics and Chemistry of Solids, 61, 6, pp. 985-993, (2000)
- [3] Chaudhary V.A., Mulla I.S., Vijayamohanan K., Comparative studies of doped and surface modified tin oxide towards hydrogen sensing: synergistic effects of Pd and Ru, Sensors and Actuators B: Chemical, 50, 1, pp. 45-51, (1998)
- [4] 38, 3, pp. 488-491, (2007)
- [5] 39, 9, pp. 1423-1429, (2008)
- [6] Cukrov L.M., McCormick P.G., Galatsis K., Et al., Gas sensing properties of nanosized tin oxide synthesised by mechanochemical processing, Sensors and Actuators B: Chemical, 77, 1, pp. 491-495, (2001)
- [7] 37, 6, pp. 31-33, (2005)
- [8] Zhang J., Gao L., Synthesis of antimony-doped tin oxide (ATO) nanoparticles by the nitrate-citrate combustion method, Materials Research Bulletin, 39, 14, pp. 2249-2255, (2004)
- [9] Jeon H.J., Jeon M.K., Kang M., Et al., Synthesis and characterization of antimony-doped tin oxide (ATO) with nanometer-sized particles and their conductivities, Materials Letters, 59, 14, pp. 1801-1810, (2005)
- [10] Fujihara S., Maeda T., Ohgi H., Et al., Hydrothermal routes to prepare nanocrystalline mesoporous SnO<sub>2</sub> having high thermal stability, Langmuir, 20, 15, pp. 6476-6481, (2004)