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Общее количество найденных документов : 47
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1.

Ab initio LC-DFT study of graphene, multilayer graphenes and graphite/P. V. Avramov [et al.] // Chemical Physics Letters:Elsevier Science BV, 2011. т.Vol. 508,N Is. 1-3.-С.86-89
2.

Effect of exposure to optical radiation and temperature on the electrical and optical properties of In2O3 films produced by autowave oxidation/I. A. Tambasov [et al.] // Semiconductors:MAIK Nauka-Interperiodica / Springer, 2014. т.Vol. 48,N Is. 2.-С.207-211
3.

Reversible UV induced metal-semiconductor transition in In2O3 thin films prepared by autowave oxidation/I. A. Tambasov [et al.] // Semiconductor Science and Technology:IOP Publishing, 2014. т.Vol. 29,N Is. 8.- Ст.82001
4.

Methane oxidation over A-site ordered and disordered Sr0.8Gd0.2CoO3−δ perovskites/S. N. Vereshchagin [et al.] // Chemical Сommunications:Royal Society of Chemistry, 2014. т.Vol. 50,N Is. 46.-С.6112-6115
5.

New method for regulating the activity of ABO3 perovskite catalysts/S. N. Vereshchagin [et al.] // Kinetics and Catalysis:MAIK Nauka-Interperiodica / Springer, 2015. т.Vol. 56,N Is. 5.-С.640-645
6.

Room temperature magneto-transport properties of nanocomposite Fe–In2O3 thin films/I. A. Tambasov [et al.] // Physica B-Condensed Matter, 2015. т.Vol. 478.-С.135-137
7.

High performance hybrid rGO/ Ag quasi-periodic mesh transparent electrodes for flexible electrochromic devices/A. S. Voronin [et al.] // Applied Surface Science:Elsevier Science, 2016. т.Vol. 364.-С.931–937
8.

Catalytic properties and nature of active centers of ferrospheres in oxidative coupling of methane/A. G. Anshits [et al.] // Applied Catalysis A - General:Elsevier Science, 2016. т.Vol. 524.-С.192-199
9.

Feature issue introduction: Colloidal systems/W. Lee [et al.] // Optical Materials Express:Optical Society of America, 2017. т.Vol. 7,N Is. 2.-С.654-657
10.

Phase transformation behavior of Sr0.8Gd0.2CoO3-delta perovskite in the vicinity of order-disorder transition/S. N. Vereshchagin [et al.] // Thermochimica Acta:Elsevier Science, 2017. т.Vol. 655.-С.34-41
11.

Верещагин С. Н. Изучение фазового перехода порядок-беспорядок в нестехиометрическом Sr-Gd-кобальтате методами ДСК, ТГ и РСА/С. Н. Верещагин, В. А. Дудников, Л. А. Соловьев // Журнал Сибирского федерального университета. Серия "Химия", 2016. т.Т. 9,N № 3.-С.326-336;Journal of Siberian Federal University - Chemistry
12.

Thermoelectric properties and cost optimization of spark plasma sintered n-type Si0.9Ge0.1 - Mg2Si nanocomposites/A. Usenko [et al.] // Scripta Materialia, 2018. т.Vol. 146.-С.295-299
13.

Enhanced luminescence performance of CaO:Ce3+,Li+,F- phosphor and its phosphor-in-glass based high-power warm LED properties/J. Deng [et al.] // Journal of Materials Chemistry C, 2018. т.Vol. 6,N Is. 15.-С.4077-4086
14.

Multi-mode resonator for ultra-wide bandpass filter with good stopband performance/I. V. Podshivalov [et al.] // IOP Conference Series: Materials Science and Engineering, 2019. т.Vol. 537:International Workshop on Advanced Technologies in Material Science, Mechanical and Automation Engineering - MIP: Engineering-2019 (4 April 2019 through 6 April 2019) Conference code: 149243,N Is. 5.- Ст.052025
15.

Su B. B. Mn2+-Based narrow-band green-emitting Cs3MnBr5 phosphor and the performance optimization by Zn2+ alloying/B. B. Su, M. S. Molokeev, Z. G. Xia // Journal of Materials Chemistry C, 2019. т.Vol. 7,N Is. 36.-С.11220-11226
16.

Using Redox-Active pi Bridging Ligand as a Control Switch of Intramolecular Magnetic Interactions/X. Z. Ma [et al.] // Journal of the American Chemical Society, 2019. т.Vol. 141,N Is. 19.-С.7721-7725
17.

Facile synthesis of the desired red phosphor Li2Ca2Mg2Si2N6:Eu2+ for high CRI white LEDs and plant growth LED device/X. Yang [et al.] // Journal of the American Ceramic Society, 2020. т.Vol. 103,N Is. 3.-С.1773-1781
18.

Quasi-lumped multimode stripline resonator and filter with good stopband performance/B. A. Belyaev [et al.] // Microwave and Optical Technology Letters, 2020. т.Vol. 62,N Is. 3.-С.1183-1187
19.

Designing high-performance LED phosphors by controlling the phase stability via a heterovalent substitution strategy/C. Cheng [et al.] // Advanced Optical Materials, 2020. т.Vol. 8,N Is. 2.- Ст.1901608
20.

Aliovalent substitution toward reinforced structural rigidity in Ce3+-doped garnet phosphors featuring improved performance/T. Hu [et al.] // Journal of Materials Chemistry C, 2019. т.Vol. 7,N Is. 46.-С.14594-14600
 

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