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Journal Nanotechnology : the development , application - XXI Century №3 for 2015 г.
Article in number:
Structure and physical properties of nanocomposites: opal matrix - rare earth manganite
Authors:
M.I. Samoylovich - Dr. Sc. (Phys.-Math.), Professor, Head of Department, Central Research Technological Institute «Technomash» (Moscow) E-mail: samoylovich@cnititm.ru А.F. Belyanin - Dr. Sc. (Eng.), Professor, Main Research Scientist, Central Research Technological Institute «Tech-nomash» (Moscow) E-mail: belyanin@cnititm.ru A.S. Bagdasaryan - Dr. Sc. (Eng.), Professor, Main Research Scientist, Kotel\'nikov IRE of RAS (Moscow) А.B. Rinkevich - Dr. Sc. (Phys.-Math.), Professor, Deputy Director, Metal Physics Institute of Russian Science Acad-emy - Ural Division (Ekaterinburg) S.A. Bagdasaryan - Ph. D. (Eng.), General Director, NPP «TRIiS» (Moscow) V. Bovtun - Dr. Sc. (Phys.-Math.), Leading Research Scientist, Institute of Physics ASCR (Praga) М. Kempa - Dr. Sc. (Phys.-Math.), Head of Department, Institute of Physics ASCR (Praga) D. Nuzhnii - Dr. Sc. (Phys.-Math.), Senior Research Scientist, Institute of Physics ASCR (Praga) M. Savinov - Senior Research Scientist, Institute of Physics ASCR (Praga)
Abstract:
The conditions for the formation of nanocomposites based on the basis of lattice packings SiO2 nanospheres (opal matrices) with included clusters of crystalline phase of of rare-earth manganites of the general formula RMnO3 or RMn2O5, where R - Yb, Tb, Er, La, Y, Gd, Nd and Bi in interspherical nanospacing are considered. The composition and structure of the nanocomposites studied electron microscopy, X-ray diffraction and Raman spectroscopy. Shows the effect of heat treatment on the structure of the carbon films and the current-voltage characteristics of field emission cathodes on their basis. Results of measuring optical, magnetic and dielectric characteristics in the range up to 30 GHz of the obtained nanostructures, are viewed. The obtained results may be useful in spintronics. The studied materials might be soon found in some information systems.
Pages: 19-28
References

 

  1. Sarychev A.K., Shalaev V.M. Electrodynamics of metamaterials. World Scientific and Imperial College Press. 2007. 200 p.
  2. Kong J.A. Electromagnetic wave interaction with stratified negative isotropic media // Progress In Electromagnetics Research. PIER. 2002. V. 35. P. 1−52.
  3. Samojjlovich M.I., Beljanin A.F., Kleshheva S.M. Fazovye prevrashhenija kremnezema v mezhsfericheskikh nanopolostjakh opalovykh matric // Rossijjskijj khimicheskijj zhurnal. 2012. T. LVI. № 3−4. S. 155−162.
  4. Samojjlovich M.I., Rinkevich A.B., Bovtun V., Beljanin A.F., Nuzhnyjj D., Kempa M., Kleshheva S.M. SVCH-kharakteristiki, mikrovolnovaja provodimost i diehlektricheskie svojjstva nanokompozitov na osnove opalovykh matric s zapolneniem mezhsfericheskikh nanopolostejj metallami // Nanoinzhenerija. 2012. № 3. S. 22−30.
  5. Rinkevich A., Samoylovich M., Belyanin A., Bagdasaryan A. Magnetic metamaterials as perspective materials of radio-electronics // Computational problems of electrical engineering. 2013. V. 2. № 2. P. 85−92.
  6. Bagdasaryan A., Samoylovich M., Mkrtchyan Al., Rinkevich A., Belyanin A., Bagdasaryan S., Mkrtchyan Ar., Afanasieva A. Technology of synthesis of opal matrix metamaterials // Advanced Materials Research. 2015. V. 1084. P. 58−60.
  7. Bagdasaryan A., Samoylovich M., Mkrtchyan Al., Rinkevich A., Belyanin A., Bagdasaryan S., Mkrtchyan Ar., Vasilevskaya N. UHF-properties of nanocomposites: magnetic resonance // Advanced Materials Research. 2015. V. 1084. P. 66−71.
  8. Samojjlovich M.I., Rinkevich A.B., Bovtun V., Beljanin A.F., Nuzhnyjj D., Kempa M., Kleshheva S.M., Savinov M. Opticheskie i diehlektricheskie svojjstva opalovykh matric s zapolneniem mezhsfericheskikh nanopolostejj ehvlitinom (Bi4(SiO4)3) // Nano- i mikrosistemnaja tekhnika. 2013. № 11. S. 19−26.
  9. Samojjlovich M.I., Bovtun V., Beljanin A.F., Nuzhnyjj D., Kempa M., Savinov M., Kleshheva S.M. Opticheskie i diehlektricheskie svojjstva opalovykh matric s zapolneniem mezhsfericheskikh nanopolostejj shpineljami // Nanoinzhenerija. 2013. № 9. S. 22−30.
  10. Samojjlovich M.I., Rinkevich A.B., Bovtun V., Beljanin A.F., Kempa M., Nuzhnyjj D., Savinov M., Kleshheva S.M. Magnitnye i diehlektricheskie svojjstva opalovykh matric s zapolneniem mezhsfericheskikh nanopolostejj kristallicheskimi fosfatami // Nanoinzhenerija. 2013. № 11. S. 19−29.
  11. Samojjlovich M.I., Bovtun V., Rinkevich A.B., Beljanin A.F., Kleshheva S.M., Kempa M., Nuzhnyjj D. Prostranstvenno-neodnorodnye materialy na osnove reshetchatykh upakovok nanosfer SiO2 // Inzhenernaja fizika. 2010. № 6. S. 29−38.
  12. Belov N.V. Struktura ionnykh kristallov i metallicheskikh faz. M. Izd. AN SSSR. 1947. 237 s.
  13. Samojjlovich M.I., Bovtun V., Rinkevich A.B., Beljanin A.F., Kleshheva S.M., Kempa M., Nuzhnyjj D. Prostranstvenno-neodnorodnye materialy na osnove reshetchatykh upakovok nanosfer SiO2 // Inzhenernaja fizika. 2010. № 6. S. 29−38.
  14. Rinkevich A.B., Ustinov V.V., Samojjlovich M.I., Beljanin A.F., Kleshheva S.M., Kuznecov E.A. Nanokompozity na osnove opalovykh matric s 3D-strukturojj, obrazovannojj magnitnymi nanochasticami // Tekhnologija i konstruirovanie v ehlektronnojj apparature. 2008. № 4. S. 55−63.
  15. Rinkevich A.B., Burkhanov A.M., Samojjlovich M.I., Beljanin A.F., Kleshheva S.M., Kuznecov E.A. 3D-nanokompozitnye metallodiehlektricheskie materialy na osnove opalovykh matric // Rossijjskijj khimicheskijj zhurnal. 2012. T. LVI. № 1−2. S. 26−35.