STRUCTURAL-PHASE TRANSFORMATIONS AND ELECTROPHYSICAL PROPERTIES OF THE COMPOSITE MATERIALS BASED ON "SiO2-B2O3-Bi2O3-ZnO-BaO" SYSTEM

Abstract

The processes of the glass forming and crystallization and also physical and chemical properties of "SiO2 - B2O3 - Bi2O3 - ZnO - BaO" system with the different concentration ratios of the initial components and doping impurities, on their granulometric composition in order to choose the optimal composition of the glasses for resistive, conductive and dielectric layers of thick-film elements of hybrid integrated circuits, solar cells, microelectronic sensors, and others has been investigated. The low-melting glass for thick-film nanocomposites, which does not contain toxic compounds of lead, is developed. As the main glass-forming component, bismuth oxide is chosen, which gives the possibility of obtaining more fusible glasses.

Authors and Affiliations

Ya. I. Lepikh, T. I. Lavrenova, N. M. Sadova, V. A. Borschak, A. P. Balaban, N. P. Zatovskaya

Keywords

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  • EP ID EP491601
  • DOI 10.18524/1815-7459.2018.4.150507
  • Views 93
  • Downloads 0

How To Cite

Ya. I. Lepikh, T. I. Lavrenova, N. M. Sadova, V. A. Borschak, A. P. Balaban, N. P. Zatovskaya (2018). STRUCTURAL-PHASE TRANSFORMATIONS AND ELECTROPHYSICAL PROPERTIES OF THE COMPOSITE MATERIALS BASED ON "SiO2-B2O3-Bi2O3-ZnO-BaO" SYSTEM. Сенсорна електроніка і мікросистемні технології, 15(4), 77-84. https://europub.co.uk/articles/-A-491601