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1.

Пленки аморфного и кристаллического оксида никеля, полученные экстракционно-пиролитическим методом для электрохромных ячеек/А. Л. Белоусов [и др.] // Химическая технология, 2019. т.Т. 20,N № 5.-С.215-221
2.

Yttrium-containing endohedral metallofullerenes: Synthesis and extraction/G. N. Churilov [et al.] // Physics of the Solid State:MAIK Nauka-Interperiodica / Springer, 2017. т.Vol. 59,N Is. 8.-С.1662-1665
3.

Ultrafast method of fullerenes extraction from carbon condensate/G. N. Churilov [et al.] // Fullerenes, Nanotubes and Carbon Nanostructures, 2019. т.Vol. 27,N Is. 3.-С.225-232
4.

Transparent conductive ITO coatings obtained by pyrolysis of metal extracts/T. N. Patrusheva [et al.] // Journal of Applied Chemical Science International, 2015. т.Vol. 3,N Is. 1.-С.21-28
5.

Thermoelectric properties of low-cost transparent single wall carbon nanotube thin films obtained by vacuum filtration/I. A. Tambasov [et al.] // Physica E: Low-Dimensional Systems and Nanostructures, 2019. т.Vol. 114.- Ст.113619
6.

Spin-dependent electrical hole extraction from low doped p-Si via the interface states in a Fe3Si/p-Si structure/A. S. Tarasov [et al.] // Semiconductor Science and Technology, 2019. т.Vol. 34,N Is. 3.- Ст.035024
7.

Simultaneous ion exchange recovery of platinum and rhodium from chloride solutions/O. N. Kononova [et al.] // Hydrometallurgy, 2011. т.Vol. 105,N Is. 3-4.-С.341-349
8.

Polycrystalline La1-xSrxMnO3 films prepared by extraction pyrolitic method/G. S. Patrin, K. P. Polyakova [et al.] // IV Euro-Asian Symposium "Trends in MAGnetism" Nanospintronics (EASTMAG-2010). School for young scientist "Spintronics". -Ekaterinburg, 2010.-С.199
9.

Parameters of the effective singlet-triplet model for band structure of high-T-c cuprates by alternative approaches/M. M. Korshunov [et al.] // JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS:AMER INST PHYSICS, 2004. т.Vol. 99,N Is. 3.-С.559-565
10.

Nanosize Magnetic Films and Powders Prepared by Extraction-Pyrolysis Technique/Patrusheva T.N.Polyakova K.P. [et al.] // J. Ma ter. Sci. Engin., 2010. т.Vol. 4,N Is .2.-С.19-25
11.

Mechanical activation of fullerene containing soot during extraction of higher and endohedral metallofullerenes/V. I. Elesina, G. N. Churilov, N. G. Vnukova [et al.] // Fullerenes Nanotubes and Carbon Nanostructures, 2022. т.Vol. 30,N Is. 5.-С.553-558
12.

Magnetic Nanoparticles for Extracting DNA from Blood Cells/A. V. Komina, R. N. Yaroslavtsev, Y. V. Gerasimova [et al.] // Bulletin of the Russian Academy of Sciences: Physics, 2020. т.Vol. 84,N Is. 11.-С.1362-1365
13.

Maghemite nanoparticles for DNA extraction: Performance and blocking temperature/S. V. Stolyar, S. V. Komogortsev, A. S. Gorbenko [et al.] // Journal of Superconductivity and Novel Magnetism, 2022. т.Vol. 35,N Is. 7.-С.1929-1936
14.

Luminescent oxide materials obtained by the extraction pyrolytic method/T. N. Patrusheva [et al.] // Theoretical Foundations of Chemical Engineering:MAIK Nauka-Interperiodica / Springer, 2012. т.Vol. 46,N Is. 4.-С.379-383
15.

Ion-exchange sorption of palladium(II) from hydrochloric acid solutions in the presence of silver(I)/O. N. Kononova [et al.] // Russian Journal of Physical Chemistry A, 2018. т.Vol. 92,N Is. 10.-С.2053-2059
16.

Ion-exchange extraction of platinum(II,IV) from chloride solutions in the presence of iron(III)/O. N. Kononova [et al.] // Russian Journal of Physical Chemistry A:MAIK Nauka-Interperiodica / Springer, 2015. т.Vol. 89,N Is. 8.-С.1464-1470
17.

Ion exchange equilibria in simultaneous extraction of platinum(II, IV) and rhodium(III) from hydrochloric solutions/A. M. Mel'nikov [et al.] // Russian Journal of Physical Chemistry A:MAIK Nauka-Interperiodica / Springer, 2012. т.Vol. 86,N Is. 6.-С.1018-1024
18.

Filtration process combined with mechanical action, as a method for efficient extraction of endohedral metallofullerenes from carbon soot/V. I. Elesina [et al.] // Fullerenes Nanotubes and Carbon Nanostructures, 2019. т.Vol. 27,N Is. 10.-С.803-807
19.

Features of the magnetic properties of La0.7Sr0.3MnO3 manganite films obtained by an extraction-pyrolysis method/G. S. Patrin [et al.] // TECHNICAL PHYSICS LETTERS:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2007. т.Vol. 33,N Is. 4.-С.330-332
20.

Elesina V. I. The method for efficient extraction of fullerenes and enrichment of EMF in an extractor/V. I. Elesina, G. N. Churilov, N. G. Vnukova // International conference "Functional materials". -Simferopol, 2021.-С.228-229
 

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