Open Access
Issue
MATEC Web Conf.
Volume 346, 2021
International Conference on Modern Trends in Manufacturing Technologies and Equipment (ICMTMTE 2021)
Article Number 02006
Number of page(s) 7
Section Materials Science
DOI https://doi.org/10.1051/matecconf/202134602006
Published online 26 October 2021
  1. Sivapunniyam A., Wiromrat N., Myint M. T. Z., Dutta J. High-performance liquefied petroleum gas sensing based on nanostructures of zinc oxide and zinc stannate // Sensors and Actuators B: Chemical. 2011. V. 157. N 1. P. 232–239. [Google Scholar]
  2. Rama S., Avadhesh Kumar Y., Chandkiram G. Synthesis and humidity sensing investigations of nanostructured ZnSnO3 // Journal of sensor technology. 2011. V. 1. P. 116–124. [CrossRef] [Google Scholar]
  3. Lu F., Liu Q. Structure and optical band gap of inverse spinel Zn2SnO4 epitaxial films // Journal of Low Temperature Physics. 2020. V. 200. P. 142–151. [CrossRef] [Google Scholar]
  4. BelousovS.A., NosovA.A., RembezaS.I., Kosheleva N.N. Synthesis and electrophysical properties of gas-sensitive films Zn2SnO4 // Izvestiya SFedU. Technical science. 2016. No. 10. P. 19–27. [Google Scholar]
  5. Dou J., Li X., Li Y., Che Y., Wei M. Fabrication of Zn2SnO4 microspheres with controllable shell numbers for highly efficient dye-sensitized solar cells // Solar Energy. 2019. V. 181. P. 424–429. [CrossRef] [Google Scholar]
  6. ChenY.C., Shen Y.R. Growth and dielectric characterizations of zinc stannate thin films deposited by RF magnetron sputtering // Integrated Ferroelectrics. 2018. V. 192. N. 1. P. 80–87. [CrossRef] [Google Scholar]
  7. Tai M., Zhao X., Shen H., Guo Y., Zhang M., Zhou Y., Li X., Yao Z., Yin X., Han J. Lin H. Ultrathin Zn2SnO4 (ZTO) passivated ZnO nanocone arrays for efficient and stable perovskite solar cells // Chemical Engineering Journal. 2019. V. 361. P. 60–66. [CrossRef] [Google Scholar]
  8. KimD. W., ShinS. S., ChoI. S., Lee S., KimD. H., LeeC. W., JungH. S., Hong K. S. Synthesis and photovoltaic property of fine and uniform Zn2SnO4 nanoparticles // Nanoscale. 2012. V. 4. N. 2. P. 557–562. [CrossRef] [Google Scholar]
  9. Nikolić M. V., Ivetić T., ParaskevopoulosK. M., ZorbasK. T., Blagojević V., Vasiljević-Radović D. Far infrared reflection spectroscopy of Zn2SnO4 ceramics obtained by sintering mechanically activated ZnO-SnO2 powder mixtures // Journal of the European Ceramic Society. 2007. Vol. 27. N. 13-15. P. 3727–3730. [CrossRef] [Google Scholar]
  10. GovindappaC. K., VenkatarangaiahV. T., Abd Hamid S. B. Electrochemical generation of cubic shaped nano Zn2SnO4 photocatalysts // Nano-micro Letters. 2013. V. 5. N. 2. P. 101–110. [CrossRef] [Google Scholar]
  11. Peiteado M., Iglesias Y., De Frutos J., FernándezJ. F., Caballero A. C. Preparation of ZnO-SnO2 ceramic materials by a coprecipitation method // Boletin de la Sociedad Espanola de Ceramica y Vidrio. 2006. V. 45. N. 3. P.158–162. [CrossRef] [Google Scholar]
  12. SidorakA.V., ShubinA.A., IvanovV.V., Nikolaeva N.S. Synthesis of Zn2SnO4 powders by heat treatment of coprecipitated compounds // Journal of Siberian Federal University. Chemistry. 2011. V. 4. No. 3. P. 285–293. [Google Scholar]
  13. Abdel Gawad Safaa Ramadan Mahmoud. Cordierite ceramics from powders obtained by the sol-gel method: dis. ... Cand. Tech. Sciences: M.: RKhTU named after D.I. Mendeleev. 2006. 160 p. [Google Scholar]
  14. Faykov P.P. Synthesis and sintering of powders in MgO-Al2O3 system obtained by the sol-gel method: dis. ... Cand. Tech. Sciences. M.: RKhTU named after D.I. Mendeleev. 2007. 163 p. [Google Scholar]
  15. VlasovA.S., Krainova L.I. Use of sol-gel processes in ceramics technology. Tr. MHTI named after D.I. Mendeleev. 1988. No. 153, P. 110–115. [Google Scholar]
  16. Andrianov N.T. Sol–gel processing in the technology of oxide materials // Glass and Ceramics. 2003. N. 10. P. 17–22. [Google Scholar]
  17. Bora T., Al‐Hinai, M. H., Al‐Hinai A. T. Dutta J. Phase transformation of metastable ZnSnO3 upon thermal decomposition by in‐situ temperature‐dependent raman spectroscopy // Journal of the American Ceramic Society. 2015. V. 98. P. 4044–4049. [CrossRef] [Google Scholar]
  18. Belyakov A. V. The effect of difference in diffusion coefficients of cations on deviation from stoichiometry in complex oxides // Glass and Ceramics. 1997. N. 10. P. 18–20. [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.