POLYACRYLATE SUPERIONIC CONDUCTORS FOR THE CONVERTER OF ENERGY AND INFORMATION
https://doi.org/10.15518/isjaee.2015.20.009
Abstract
The article considers the receiving and research of physical and chemical properties of polymeric electrolyte with Li-ion conductivity. There is rather detailed description of technological process of polymeric electrolyte production, research of conductivity of polymeric electrolyte in a wide interval of temperatures, also infrared spectroscopy and the X-ray diffraction analysis. It is shown that the electrolyte can be applied at production of energy converters of film structure.
About the Authors
A. M. MihailovaRussian Federation
DSc (chemistry), professor of Chemistry department of Physical-Technical faculty, Yuri Gagarin State Technical University of Saratov
K. S. Zubtsova
Russian Federation
graduate student of Chemistry department of Physical-Technical faculty, Yuri Gagarin State Technical University of Saratov
N. V. Prudnikov
Russian Federation
DSc (engineering), Interdepartment Center of Analytical Research in Physics, Chemistry and Biology at the Presidium of Russian Academy of Sciences; professor of MIREA
T. V. Dubrova
Russian Federation
head of section of Interdepartment Center of Analytical Research in Physics, Chemistry and Biology at the Presidium of Russian Academy of Sciences
N. I. Gorskaya
Russian Federation
graduate student of Chemistry department of Physical-Technical faculty, Yuri Gagarin State Technical University of Saratov
References
1. Himičeskie istočniki toka: Handbook. Moscow: Izd-vo Mosk. ènerg. in-ta Publ., 2003 (in Russ.).
2. Nizhnikovsky E.A. Himičeskie istočniki avtonomnogo èlektropitaniâ radioèlektronnoj apparatury. Moscow: Izd-vo Mosk. ènerg. in-ta Publ., 2004 (in Russ.).
3. Bagocky V.S., Skundin A.M. Problemy v oblasti litievyh istočnikov toka. Èlektrohimiâ, 1995, vol. 31, no. 4, pp. 342–349 (in Russ.).
4. Chudinov E.A., Tkachuk S.V. Primenenie lateksov v proizvodstve materialov litij-ionnogo akkumulâtora. Aktualʹnye problemy èlektrohimičeskoj tehnologii, Saratov, 2011, vol. 2, pp. 151–156 (in Russ.).
5. Gray F.M. Polymer electrolytes. Cambridge: The Royal Society of Chemistry, 1997 (in Eng.).
6. Chandrasekhar V. Polymer solid electrolytes: synthesis and structure. Advances in Polymer Science, 1998, vol. 135, pp. 139–205 (in Eng.).
7. Syromyatnikov V.G., Paskalʹ L.P., Mashkin O.A. Polimernye èlektrolity dlâ litievyh himičeskih istočnikov toka. Uspehi himii, 1995, vol. 3, no. 64, pp. 265–274 (in Russ.).
8. Zhukovsky V.M., Bushkova O.V., Lirova B.I. Tverdyj litijprovodâŝij èlektrolit i sposob ego polučeniâ. Patent 2066901 RF, MKI N 01M 6/18. Opublikovano 27.08.1999 (in Russ.).
9. Watanabe M., Kanba M., Nagaoka K., Shiohara I. J. Appl. Polym. Sci., 1982, no. 27, pp. 4191–4194 (in Eng.).
10. Zhukovsky V.M., Bushkova O.V., Lirova B.I. et al. Problema bystrogo ionnogo transporta v tverdyh polimernyh èlektrolitah. Žurnal Ros. him. ob-va im. D.I. Mendeleeva, 2001, vol. XLV, no. 4, pp. 35–43 (in Russ.).
11. Yarmolenko O.V., Hatmullina K.G. Polimernye èlektrolity dlâ litievyh istočnikov toka: sovremennoe sostoânie i perspektivy. International Scientific Journal
12. «Alʹternativnaâ ènergetika i èkologiâ» (ISJAEE), 2010, no. 3 (83), pp. 59–76 (in Russ.).
13. Mihailova A.M., Zubcova K.S. Razrabotka tehnologičeskih osnov sozdaniâ litievogo istočnika toka s tverdym polimernym èlektrolitom. International Scientific Journal «Alʹternativnaâ ènergetika i èkologiâ» (ISJAEE), 2013, no. 2/2 (120), pp. 112–116 (in Russ.).
14. Efanova V.V., Zubcova K.S, Novozhilov E.P. et al. Superionnye provodniki po ŝeločnomu metallu na osnove poliakrilatov. Abstracts of 7th Russian Scientific Conference «Tehnologii i materialy dlâ èkstremalʹnyh uslovij», Tuapse, 15–22 September 2012, pp. 64–65 (in Russ.).
15. Ukshe E.A., Bukun N.G. K voprosu ob impedanse granicy metall/tverdyj èlektrolit. Èlektrohimiâ, 1980, vol. 16, no. 3, pp. 313–319 (in Russ.).
16. Chebotarev V.P., Smirnov S.E., Komkov V.A. Gelʹpolimernye èlektrolity na osnove polisulʹfona dlâ litievyh istočnikov toka. Plastičeskie massy, 2003, pp. 7–9 (in Russ.).
17. Duhanin G.P., Dumler S.A., Novakov I.A., Glazov V.I. Perspektivnye èlektrolity dlâ litievyh himičeskih istočnikov toka. Himiâ i tehnologiâ èlementoorganičeskih monomerov i polimernyh materialov: Interuniversity Collection of Scientific Papers of VolgGTU – Volgograd, 1997, pp. 65–73 (in Russ.).
18. Duhanin G.P., Dumler S.A., Sablin A.N., Novakov I.A. Èlektroprovodâŝie kompozicii na osnove sistemy poliètilenkarbonat – perhlorat litiâ. Izvestiâ VolgGTU: Interuniversity Collection of Scientific Papers no. 6(32). VolgGTU – Volgograd, 2008, Ser. Himiâ i tehnologiâ èlementoorganičeskih monomerov i polimernyh materialov, pp. 163–165 (in Russ.).
Review
For citations:
Mihailova A.M., Zubtsova K.S., Prudnikov N.V., Dubrova T.V., Gorskaya N.I. POLYACRYLATE SUPERIONIC CONDUCTORS FOR THE CONVERTER OF ENERGY AND INFORMATION. Alternative Energy and Ecology (ISJAEE). 2015;(20):102-109. (In Russ.) https://doi.org/10.15518/isjaee.2015.20.009