The Relationship Between the Distribution of Valence Electrons and Electrochemical Properties of Mixtures α-Fe2O3/Al2O3, α-Fe2O3/SiO2 and γ-Fe2O3/SiO2 Before and After Mechanical Activation Synthesis
DOI:
https://doi.org/10.15330/pcss.16.4.679-684Keywords:
γ-Fe2O3, mechanical activation, the energy redistribution, ultra-soft X-ray emission spectroscopy (UMRES, electrochemical analysis, phase composition, coherent scattering regionAbstract
Using the method of electrochemical analysis the charge capacity of electrochemical cells with cathode material on the bases of simple and mechanically activated mixtures 0,2α-Fe2O3+0,8Al2O3, 0,2α-Fe2O3+0,8SiO2 та 0,2γ-Fe2O30,8SiO2 has been researched. With the help of method of ultra soft X-ray spectroscopy the influence of mechanical activation method on the distribution of valence electrons of these mixtures has been researched. In this research, the relationship between changes in populations of electronic states in the valence band and intercalation properties of studied mixtures has been studied.
References
V. O. Kocjubins'kij, Vіsnik Prikarpats'kogo nacіonal'nogo unіversitetu іmenі Vasilja Stefanika. Serіja Hіmіja, V. XIV. C. 4–28 (2012).
O. V. Morushko, L. S. Jablon', І. M. Budzuljak, V. O. Kocjubins'kij, M. M. Kuzishin, B. K. Ostafіjchuk, B. І. Rachіj, O. M. Hemіj, B. І. Javors'kij, Physics and Chemistry of Solid State 14(3), 5-21 (2013).
B. K. Ostafіjchuk, І. M. Gasjuk, L. S. Kajkan, B. Ja. Deputat, O. V. Morushko, Physics and Chemistry of Solid State, 1/4 (2006).
Kotsyubynsky V., Abdul Halek Zamil, Al-Saedi, Moklyak, V., Lisovsky, R. Lviv, Ukraine, P.100 – 101 (2014).
Ya. V. Zaulychnyy, V. Ya Ilkiv, V. I. Zarko, M. V. Karpetz, M. V. Pereginiak, S. S. Petrovska, V. M. Gun'ko, Chem. Phys. Technol. Surf. 5 p.136–144 (2014).
Sintez ta fіziko-hіmіchnі vlastivostі katodnih materіalіv lіtіevih dzherel strumu na osnovі skladnih zalіzovmіsnih oksidіv : avtoref. dis. ... d-ra fіz.-mat. nauk : 01.04.24 / Gasjuk Іvan Mihajlovich ; DVNZ "Prikarpat. nac. un-t іm. V. Stefanika". - Іvano-Frankіvs'k, 36 s (2011).
V. M. Gun'ko, V. Ya. Ilkiv, Ya. V. Zaulychnyy, V. I.Zarko, E. M. Pakhlov, M. V. Karpetz, Journal of NonCrystalline Solids, 403, 30 (2014).
Ja. V. Zaulichnij, Ju. V. Javors'kij, V. M. Gun'ko, V. І. Zarko, V. Ja. Іl'kіv, M. V. Karpec', V. O. Kocjubins'kij, Physics and Chemistry of Solid State 16(1), 55-61 (2015).
Ya. V. Zaulychnyy, V. M. Gun’ko, Yu. V. Yavorskyi, V. I. Zarko, S. S. Piotrowska, and V. M. Mishchenko, Metallofiz. Noveishie Tekhnol, 37(8), pp.1063—1075 (2015).
Ya. V. Zaulychnyy, Y. V. Yavorskyi, V. I. Zarko, V. M. Gun’k, I. M. Gasuk, V. V. Ugorchuk, M. M. Vidluvanyy, M. B. Harlan, Jornal of Nanostructured materials 2, (2015).
V. O. Kocjubins'kij, V. V. Mokljak, І. F. Mironjuk, V. L. Cheljadin, K. B. Ostafіjchuk, N. І. Nagіrna, І. V. Urubkov, Physics and Chemistry of Solid State 10(3), 565 (2009).
І. M. Gasjuk, V. M. Pilipіv, A. M. Bojchuk, P. O. Sulim, S. V. Vojtkіv, T. Ja. Bojchuk, Physics and Chemistry of Solid State 15(3) 530-535 (2014).