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Том 89, № 5 (2016) Chemical treatment of graphite nanoplatelets and their use in supercapacitors
Shibaev A., Yusin S., Maksimovskii E., Ukhina A., Bannov A.
Том 90, № 6 (2017) Chemistry and technology of special-purity trimethyl alkoxysilanes
Trokhin V., Bessarabov A., Gafitullina E., Zabolotnaya E.
Том 89, № 10 (2016) Choice of a catalyst and technological scheme for synthesis of solketal
Dmitriev G., Terekhov A., Zanaveskin L., Khadzhiev S., Zanaveskin K., Maksimov A.
Том 89, № 5 (2016) Choice of the substrate material for deposition of a superconducting coating
Dubrovskii A., Okunev M., Makarova O., Makhaev E., Kuznetsov S.
Том 91, № 7 (2018) Clean and Green Procedure for the Synthesis of Biodiesel from the Esterification of Free Fatty Acids and Alcohol Catalyzed by 6-O-(sulfobutyl)-β-cyclodextrin
Zhang G., He L., Yuan M., Li H., Chang T., Qin S.
Том 92, № 1 (2019) Co3O4 Nanoparticles Modified TiO2 Nanotube Arrays with Improved Photoelectrochemical Performance
Cao H., Lu Y., Ning W., Zhang H., Zheng G.
Том 90, № 9 (2017) Coagulation and heterocoagulation interactions of components in aqueous dispersed systems microcrystalline cellulose–TiO2, microcrystalline cellulose–TiOSO4, and TiO2–TiOSO4
Imramova V., Koroleva N., Lorentsson A., Chernoberezhskii Y.
Том 91, № 2 (2018) Coagulation of Natural Rubber and Polyvinyl Chloride Latices
Dao P., Gaidadin A., Gorkovenko D., Navrotskiy V.
Том 90, № 5 (2017) Coatings by refractory metal carbides: Deposition from molten salts, properties, application
Stulov Y., Dolmatov V., Dubrovskii A., Kuznetsov S.
Том 89, № 9 (2016) Cobalt thiolate complexes catalyst in noble-metal-free system for photocatalytic hydrogen production
Cai X., Li G., Yang Y., Zhang C., Yang X.
Том 89, № 5 (2016) CoFe2O4 nanoparticles structural and magnetic stability relative to ball milling
Dehghanpour H.
Том 92, № 12 (2019) Colloidal Stability of Greases Based on Oils with Organic Thickening Agents
Lyadov A., Yarmush Y., Parenago O.
Том 89, № 6 (2016) Colloid-chemical properties and physiological activity of water-soluble humic preparations
Yudina N., Mal’tseva E., Smirnova A., Berezina E.
Том 91, № 10 (2018) Combustion Rate of Solid Fuels in the Superadiabatic Mode
Glazov S., Kislov V., Salgansky E.
Том 91, № 10 (2018) Comment on the article “BiF3:Ho3+ System for Upconversion of 2-μm Laser Radiation into Visible Emission” of authors A. P. Savikin, A. S. Egorov, A. V. Budruev, and I. A. Grishin [Russian Journal of Applied Chemistry 89 (2), 337–340 (2016)]
Fedorov P., Mayakova M.
Том 90, № 4 (2017) Co-Mo/Al2O3 and Ni-W/Al2O3 catalysts: Potential and prospects for use in hydrotreating of light cycle oil from catalytic cracking
Maximov N., Tomina N., Solmanov P., Pimerzin A.
Том 92, № 8 (2019) Comparative Evaluation of the Sorption Activity of Carbon Sorbents with Respect to Deltamethrin and Invermectin Pesticides
P’yanova L., Gerunova L., Drozdetskaya M., Gerunov T.
Том 91, № 6 (2018) Comparative Evaluation of Zeolite Catalysts of Benzene Alkylation
Gerzeliev I., Ostroumova V., Zhmylev V., Khadzhiev S.
Том 90, № 6 (2017) Comparative study of niobium-containing hexagonal mesoporous silicas prepared using different niobium sources
Li X.
Том 90, № 10 (2017) Comparative Study of the Support Role on the Activity of Copper Species for Nitric Oxide Reduction
Panahi P., Delahay G.
Том 90, № 10 (2017) Comparative Study of Titanium-modified HMS Mesoporous Materials via Different Preparing Methods
Li X., Zhang L.
Том 90, № 7 (2017) Comparative study on hydrothermally synthesized LiMnxFe1–xPO4 (x = 0∼1) cathode at full-cell level
Zhou G., Guo S.
Том 90, № 8 (2017) Comparison of catalytic performance of synthesized EU-1 zeolite with dealuminated EU-1 zeolite for m-xylene isomerization reaction
Rahbari Z., Khosravan M., Kharat A.
Том 89, № 2 (2016) Comparison of catalytic properties of systems based on nickel complexes with 1,4-diaza-1,3-butadiene ligands in reactions of styrene hydrogenation and ethylene polymerization
Titova Y., Belykh L., Shmidt F.
Том 92, № 4 (2019) Comparison of Extractive Capacities of Systems Based on Sulfonol, Sodium Dodecyl Sulfate, or Alkyl Benzene Sulfonic Acid
Zabolotnykh S., Gileva K., Lesnov A., Denisova S.
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