Metal oxide nanoparticles synthesized on porous silicon substrates

Author:

Kononova I. E.,Lenshin A. S.,An’chkov M. G.,Moshnikov V. A.

Publisher

Pleiades Publishing Ltd

Subject

Materials Chemistry,Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference16 articles.

1. Sun, Y.-F., Liu, Sh.-B., Meng, F.-L., Liu, J.-Y., Jin, Zh., Kong, L.-T., and Liu, J.-H., Metal oxide nanostructures and their gas sensing properties: a review, Sensors, 2012, vol. 12, no. 3, pp. 2610–2631.

2. Sysoev, V.V., Musatov, V.Yu., Silaev, A.V., Mashchenko, A.A., and Zalyalov, T.R., Application of the neural networks to analyze the response of a singlechip multi-sensor system for identifying gases, Vestn. Saratov. Tekh. Univ., 2007, no. 1 (21), is. 1, pp. 80–87.

3. Gracheva, I.E., Spivak, Yu.M., and Moshnikov, V.A., AFM techniques for nanostructures materials used in optoelectronic and gas sensors, in Proceedings of the IEEE Eurocon-2009, St.-Petersburg, 2009, pp. 1250–1253.

4. Gracheva, I.E. and Moshnikov, V.A., Atomic force microscopy of gas sensitivities fractal structures based on tin dioxide, Izv. SPbGETU LETI, 2008, no. 5, pp. 3–10.

5. Gareev, K.G., Gracheva, I.E., Almjashev, V.I., and Moshnikov, V.A., Synthesis and analysis of xerogel powders containing hematite nanophase, Izv. SPbGETU LETI, 2011, no. 5, pp. 26–32.

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