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Issue DateTitleAuthor(s)
2022Activation Energy Distribution in Thermal Quenching of Exciton and Defect-related Photoluminescence of InP/ZnS Quantum DotsSavchenko, S. S.; Vokhmintsev, A. S.; Weinstein, I. A.
2018Application of Water-Air Cooling Technologies for Heat Treatment of Bearing RingsYaroshenko, Y. G.; Lipunov, Y. I.; Smakhanov, A. B.; Stolyarova, M. V.
2022Bright Blue Emissions on UV-Excitation of LaBO3 (B=In, Ga, Al) Perovskite Structured Phosphors for Commercial Solid-State Lighting ApplicationsKumar, B. V. N.; Samuel, T.; Bevara, S.; Rao, K. R.; Chirauri, S. K.
2019Decomposition Staging of β-metastable Solid Solution in (α+β) Titanium Alloy During HeatingStepanov, S.; Illarionov, A.; Stepanova, E.
2013Design of water-drip cooling facilities for heat treatment of mill rollersYudin, Y. V.; Maisuradze, M. V.; Anufriev, N. P.
2012Effect of heat treatment and plastic deformation on the structure and elastic modulus of a biocompatible alloy based on zirconium and titaniumPopov, A. A.; Illarionov, A. G.; Grib, S. V.; Elkina, O. A.; Ivasishin, O. M.; Markovskii, P. E.; Skiba, I. A.
2020Effect of quenching on the electrical and optical properties of MoTe2Marchenkov, V. V.; Domozhirova, A. N.; Parulin, R. A.; Naumov, S. V.; Makhnev, A. A.; Shreder, E. I.; Patrakov, E. I.; Chistyakov, V. V.; Ivanov, A. D.; Huang, J. C. A.
2020Electronic transport features of MoTe2caused by quenchingMarchenkov, V. V.; Domozhirova, A. N.; Naumov, S. V.; Podgornykh, S. M.; Chistyakov, V. V.; Korenistov, P. S.; Huang, J. C. A.
2012Formation conditions of omega phase in the titanium alloys after quenchingPopov, A. A.; Illarionov, A. G.; Grib, S. V.; Elkina, O. A.
2012Improvement of wear resistance of quenched structural steel by nanostructuring frictional treatmentMakarov, A. V.; Pozdejeva, N. A.; Savrai, R. A.; Yurovskikh, A. S.; Malygina, I. Yu.
2016Insight into the defect-molecule interaction through the molecular-like photoluminescence of SiO2 nanoparticlesSpallino, L.; Vaccaro, L.; Agnello, S.; Gelardi, F. M.; Zatsepin, A. F.; Cannas, M.
2010Low-Temperature Luminescence of Lead Silicate GlassZatsepin, A. F.; Kukharenko, A. I.; Buntov, E. A.; Pustovarov, V. A.; Cholakh, S. O.
2020Non-radiative relaxation processes in luminescence of InP/ZnS quantum dotsSavchenko, S. S.; Vokhmintsev, A. S.; Weinstein, I. A.
2021Peculiarities of the electro- And magnetoresistivity of WTe2and MoTe2single crystals before and after quenchingDomozhirova, A. N.; Naumov, S. V.; Podgornykh, S. M.; Marchenkova, E. B.; Chistyakov, V. V.; Huang, J. C. A.; Marchenkov, V. V.
2022Plant Growth Promoting Bacteria Improve Growth and Phytostabilization Potential of Zea Mays under Chromium and Drought Stress by Altering Photosynthetic and Antioxidant ResponsesVishnupradeep, R.; Bruno, L. B.; Taj, Z.; Karthik, C.; Challabathula, D.; Tripti; Kumar, A.; Freitas, H.; Rajkumar, M.
2013Specific features of cast high-entropy AlCrFeCoNiCu alloys produced by ultrarapid quenching from the meltIvchenko, M. V.; Pushin, V. G.; Uksusnikov, A. N.; Wanderka, N.; Kourov, N. I.
2019Structural and Phase Transformation in a Cold-Deformed Titanium Alloy During AgingIllarionov, A.; Narygina, I.; Karabanalov, M.; Kylosova, I.
2012Structure, phase composition, physical properties of quenched VT16 alloyIllarionov, Anatoly; Stepanov, Stepan; Demakov, Sergey; Popov, Artemiy
2022Thermal quenching of self-trapped exciton luminescence in nanostructured hafniaShilov, A. O.; Savchenko, S. S.; Vokhmintsev, A. S.; Gritsenko, V. A.; Weinstein, I. A.
2020Влияние закалки на формирование структуры и свойств биосовместимых титановых сплавов Ti–39Nb–хZr (х = 5; 7; 9 МАС. %)Korenev, A. A.; Grib, A. A.; Коренев, А. А.; Гриб, С. В.