| Issue | 
	Title | 
	File | 
		| Vol 42, No 6 (2016) | 
	Chalcogenide glass for AgI-based nanolayered films | 
	
                	 | 
	| 
		Tver’yanovich Y.S., Fokina S.V., Tver’yanovich A.S., Kurochkin A.V., Tomaev V.V.
	 | 
		| Vol 42, No 2 (2016) | 
	Change of the thermal behavior of 55Bi2O3 ⋅ 45B2O3 glass at annealing close to the vitrification temperature | 
	
                	 | 
	| 
		Babitskii N.A., Zhereb V.P., Bermeshev T.V.
	 | 
		| Vol 42, No 6 (2016) | 
	Characteristics of a melt of the corium–high alumina cement system | 
	
                	 | 
	| 
		Udalov Y.P., Poznyak I.V., Shrank I., Kiselova M., Streich M., Sazavskii P.
	 | 
		| Vol 43, No 6 (2017) | 
	Characteristics of NanoSilica Produced from Hydrothermal Solutions | 
	
                	 | 
	| 
		Potapov V.V., Serdan A.A.
	 | 
		| Vol 43, No 5 (2017) | 
	Characteristics of protic ionic liquids based on triethanolammonium salts of biologically active carboxylic acids and their impact on the growth properties of the Rhizopus oryzae fungus | 
	
                	 | 
	| 
		Kondratenko Y.A., Nyanikova G.G., Molchanova K.V., Kochina T.A.
	 | 
		| Vol 45, No 5 (2019) | 
	Characterization of Nano-SiC Powder Prepared by High-Energy Ball Milling as a Mechanochemical Process with Subsequent Annealing Process | 
	
                	 | 
	| 
		Arefpour A., Shafieirad A., Karamian E., Shahmohammadian F., Chami A.
	 | 
		| Vol 43, No 1 (2017) | 
	Chemical and thermal stability of phosphate ceramic matrices | 
	
                	 | 
	| 
		Mezentseva L.P., Osipov A.V., Akatov A.A., Doil’nitsyn V.A., Ugolkov V.L., Popova V.F., Maslennikova T.P., Drozdova I.A.
	 | 
		| Vol 45, No 4 (2019) | 
	Cluster Self-Organization of Intermetallic Systems. New Cluster Presursor (InNa5)(AuAu5) and Primary Chain with the 5m Symmetry for the Self-Assembly of the Na32Au44In24–oP100 Crystal Structure | 
	
                	 | 
	| 
		Shevchenko V.Y., Blatov V.A., Il’yushin G.D.
	 | 
		| Vol 45, No 3 (2019) | 
	Cluster Self-Organization of Intermetallic Systems: 0@12(Ga12)@24(Na12Ga12)@72(Rb4Na8Ga60) 108-Atom Three-Layer Icosahedral Cluster and 0@12(Ga12)@32(Na20Ga12) 44-Atom Two-Layer Icosahedral Cluster for Rb24Na200Ga696-oF920 Crystal Structure Self-Assembly | 
	
                	 | 
	| 
		Shevchenko V.Y., Blatov V.A., Ilyushin G.D.
	 | 
		| Vol 44, No 6 (2018) | 
	Cluster Self-Organization of Intermetallic Systems: 124-Icosahedral Three-Layered Cluster 0@12(Ga12)@32(Ga12Na20)@80(Ga60Na6K14) for the Self-Assembly of the Crystalline Framework of Na26K8Ga104 (R\(\bar {3}\)m, R414) | 
	
                	 | 
	| 
		Shevchenko V.Y., Blatov V.A., Ilyushin G.D.
	 | 
		| Vol 44, No 5 (2018) | 
	Cluster Self-Organization of Intermetallic Systems: Cs6 and Cs4 Metal Clusters and Cs11O3 Metal–Oxygen Cluster for the Self-Assembly of the (Cs4)(Cs6)(Cs11O3) Crystal Structure | 
	
                	 | 
	| 
		Shevchenko V.Y., Blatov V.A., Ilyushin G.D.
	 | 
		| Vol 44, No 6 (2018) | 
	Cluster Self-Organization of Intermetallic Systems: New 143-Atom Icosahedral Nanocluster-Precursor and the Self-Assembly of a Crystalline Framework (Ba,Ca)46Li102 (R\(\bar {3}\)c, hR888) | 
	
                	 | 
	| 
		Shevchenko V.Y., Blatov V.A., Ilyushin G.D.
	 | 
		| Vol 44, No 4 (2018) | 
	Cluster Self-Organization of Intermetallic Systems: Two-Layer Quasi-Spherical Nanocluster Precursors K69 and K26 in the Crystal Structure of Li26Na58Ba38 (cF488) | 
	
                	 | 
	| 
		Shevchenko V.Y., Blatov V.A., Ilyushin G.D.
	 | 
		| Vol 45, No 6 (2019) | 
	Comparative Analysis of Triply Periodic Minimal Surface Corundum Products Obtained by 3D Printing | 
	
                	 | 
	| 
		Dolgin A.S., Bogdanov S.P., Khristyuk N.A., Kozlov V.V., Sychev M.M.
	 | 
		| Vol 44, No 5 (2018) | 
	Comparative Study of Powders Based on the ZrO2–Y2O3–СeO2 System Obtained by Various Liquid Phase Methods of Synthesis | 
	
                	 | 
	| 
		Koval’ko N.Y., Kalinina M.V., Maslennikova T.P., Morozova L.V., Myakin S.V., Khamova T.V., Arsent’ev M.Y., Shilova O.A.
	 | 
		| Vol 42, No 4 (2016) | 
	Composition and structure of copper oxide films synthesized by reactive magnetron sputtering with a hot target | 
	
                	 | 
	| 
		Lapshin A.E., Levitskii V.S., Shapovalov V.I., Komlev A.E., Shutova E.S., Myl’nikov I.L., Komlev A.A.
	 | 
		| Vol 42, No 1 (2016) | 
	Composition, structure, and morphology of the surface of nanodimensional platinum-containing films obtained from sols | 
	
                	 | 
	| 
		Shilova O.A., Gubanova N.N., Matveev V.A., Bayramukov V.Y., Kobzev A.P.
	 | 
		| Vol 44, No 3 (2018) | 
	Computation of Foam Glass Thermal Field in the Annealing Process | 
	
                	 | 
	| 
		Grushko I.S.
	 | 
		| Vol 45, No 3 (2019) | 
	Constant Composition Groups in Glass of Sodium–Borate Systems According to the Data of X-Ray Diffractometry | 
	
                	 | 
	| 
		Yanush O.V., Onushchenko P.A., Sycheva G.A.
	 | 
		| Vol 42, No 6 (2016) | 
	Controlling surface functional composition and improving the gas-sensing properties of metal oxide sensors by electron beam processing | 
	
                	 | 
	| 
		Nalimova S.S., Myakin S.V., Moshnikov V.A.
	 | 
		| Vol 42, No 5 (2016) | 
	Conversion of two-micron radiation into visible light using glass and ceramics based on ZBLAN: Но3+ and ZBLAN: Ho3+ + Yb3+ | 
	
                	 | 
	| 
		Savikin A.P., Egorov A.S., Budruev A.V., Grishin I.A.
	 | 
		| Vol 42, No 3 (2016) | 
	Coordination state of aluminum and boron in barium aluminoborate glass | 
	
                	 | 
	| 
		Osipov A.A., Eremyashev V.E., Mazur A.S., Tolstoi P.M., Osipova L.M.
	 | 
		| Vol 42, No 5 (2016) | 
	Creation and properties of ceramics from niobium oxide nanopowder | 
	
                	 | 
	| 
		Lysenko V.I.
	 | 
		| Vol 43, No 5 (2017) | 
	Crystal structure and mechanical properties of titanium nitride films synthesized by magnetron sputtering with a hot target | 
	
                	 | 
	| 
		Shapovalov V.I., Useinov A.S., Kravchuk K.S., Gladkikh E.V., Kozin A.A., Smirnov V.V.
	 | 
		| Vol 42, No 4 (2016) | 
	Crystal structure of new compound (Rb,K)2Cu3(P2O7)2 | 
	
                	 | 
	| 
		Krivovichev S.V., Chernyat’eva A.P.
	 | 
	
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