يعرض 1 - 20 نتائج من 418 نتيجة بحث عن '"N. A. Mukhin"', وقت الاستعلام: 0.64s تنقيح النتائج
  1. 1
    Academic Journal
  2. 2
    Academic Journal
  3. 3
    Academic Journal
  4. 4
    Academic Journal
  5. 5
    Academic Journal
  6. 6
    Academic Journal
  7. 7
    Academic Journal
  8. 8
    Academic Journal
  9. 9
    Academic Journal
  10. 10
    Academic Journal
  11. 11
    Academic Journal
  12. 12
    Academic Journal
  13. 13
    Academic Journal
  14. 14
    Academic Journal
  15. 15
    Academic Journal
  16. 16
    Academic Journal

    المساهمون: The work was supported by the Ministry of Science and Higher Education of the Russian Federation № 075-01024-21-02 dated 29.09.2021 (grant number no. FSEE-2021-0014)., Работа выполнена в рамках государственного задания Министерства науки и высшего образования Российской Федерации № 075-01024-21-02 от 29.09.2021 (проект FSEE-2021-0014).

    المصدر: Journal of the Russian Universities. Radioelectronics; Том 25, № 2 (2022); 74-81 ; Известия высших учебных заведений России. Радиоэлектроника; Том 25, № 2 (2022); 74-81 ; 2658-4794 ; 1993-8985

    وصف الملف: application/pdf

    Relation: https://re.eltech.ru/jour/article/view/620/611; Структурные свойства BaZrxTi1–xTiO3 и BaSnxTi1–xTiO3 тонких пленок на монокристаллических подложках / А. В. Тумаркин, А. Г. Гагарин, М. В. Злыгостов, Н. А. Ялымов // Электроника и микроэлектроника СВЧ. 2018. Т. 1. С. 616–620.; Electrically tunable dielectric materials and strategies to improve their performances / L. B. Kong, S. Li, T. S. Zhang, J. W. Zhai, F. Y. C. Boey, J. Ma // Progress in Materials Science. 2010. Vol. 55, № 8. P. 840–893. doi:10.1016/J.PMATSCI.2010.04.004; The properties of BaSn0.15Ti0.85O3 thin film prepared by radio frequency magnetron sputtering from powder target / G. Zhu, Z. Yang, H. Yang, H. Xu, A. Yu // J. of the American Ceramic Society. 2010. Vol. 93, № 10. P. 2972–2974. doi:10.1111/J.1551-2916.2010.03942.X; Maiti T., Guo R., Bhalla A. S. Evaluation of experimental resume of BaZrxTi1–xO3 with perspective to ferroelectric relaxor family: an overview // Ferroelectrics. 2011. Vol. 425, № 1. P. 4–26. doi:10.1080/00150193.2011.644168; Microstructure, dielectric properties and diffuse phase transition of barium stannate titanate ceramics / W. Cai, Yi. Fan, J. Gao, Ch. Fu, X. Deng // J. of Materials Science: Materials in Electronics. 2011. Vol. 22, № 3. P. 265–272. doi:10.1007/S10854-010-0126-7; Broadband dielectric response of Ba(Zr,Ti)O3 ceramics: from incipient via relaxor and diffuse up to classical ferroelectric behavior / D. Nuzhnyy, J. Petzelt, M. Savinov, T. Ostapchuk, V. Bovtun, M. Kempa, J. Hlinka, V. Buscaglia, M. T. Buscaglia, P. Nanni // Physical Review B. 2012. Vol. 86, № 1. P. 014106. doi:10.1103/PHYSREVB.86.014106; Dielectric inspection of BaZr0.2Ti0.8O3 ceramics under bias electric field: A survey of polar nano-regions / Q. Xu, D. Zhan, D. P. Huang, H. X. Liu, W. Chen, F. Zhang // Materials Research Bulletin. 2012. Vol. 47, № 7. P. 1674–1679. doi:10.1016/J.MATERRESBULL.2012.03.062; Study on the influence of powder size on the properties of BTS/ITO thin film by RF sputtering from powder target / G. S. Zhu, H. R. Xu, J. J. Li, P. Wang, X. Y. Zhang, Y. D. Chen, D. L. Yan // Materials Lett. 2017. Vol. 194. P. 90–93. doi:10.1016/J.MATLET.2017.02.003; Ansaree M. J., Upadhyay S. Study of phase evolution and dielectric properties of Sn-doped barium titanate // Emerging Materials Research. 2017. Vol. 6, № 1. P. 21–28. doi:10.1680/JEMMR.16.00013; High tunability in (110)-oriented BaZr0.2Ti0.8O3 (BTZ) lead-free thin films fabricated by pulsed laser deposition / Sh. Yu, R. Liu, L. Ge, L. Zhao, L. Li, Ch. Zhang, H. Zheng, Yo. Sun // Ceramics International. 2018. Vol. 44, № 3. P. 3005–3008. doi:10.1016/J.CERAMINT.2017.11.055; Thickness dependence of microstructure, dielectric and leakage properties of BaSn0.15Ti0.85O3 thin films / M. Wu, Ch. Zhang, Sh. Yu, L. Li // Ceramics International. 2018. Vol. 44, № 10. P. 11466–11471. doi:10.1016/J.CERAMINT.2018.03.208; Ultra-high energy density thin-film capacitors with high power density using BaSn0.15Ti0.85O3/Ba0.6Sr0.4TiO3 heterostructure thin films / Sh. Yu, Ch. Zhang, M. Wu, H. Dong, L. Li // J. of Power Sources. 2019. Vol. 412. P. 648–654. doi:10.1016/J.JPOWSOUR.2018.12.012; Xu L., Xu Y. Effect of Zr4+ content on crystal structure, micromorphology, ferroelectric and dielectric properties of Ba (ZrxTi1-x)O3 ceramics // J. of Materials Science: Materials in Electronics. 2020. Vol. 31, № 7. P. 5492–5498. doi:10.1007/S10854-020-03114-2; Wu C., Yao M., Yao X. Dielectric tunable properties of BaTi1–xSnxO3 thin films derived from sol-gel soft chemistry // Ceramics International. 2021. Vol. 47, № 14. P. 20230–20238. doi:10.1016/J.CERAMINT.2021.04.030; Wu C., Yao M. Dielectric tunable characteristics of compositional-gradient BaTi1–xSnxO3 thin films // J. of Advanced Dielectrics. 2021. Vol. 11, № 04. P. 2150019. doi:10.1142/S2010135X21500193; https://re.eltech.ru/jour/article/view/620

  17. 17
    Academic Journal

    المصدر: Journal of the Russian Universities. Radioelectronics; Том 22, № 5 (2019); 107-115 ; Известия высших учебных заведений России. Радиоэлектроника; Том 22, № 5 (2019); 107-115 ; 2658-4794 ; 1993-8985

    وصف الملف: application/pdf

    Relation: https://re.eltech.ru/jour/article/view/380/351; Costa R. C., Sodré J. R. Hydrous Ethanol vs. Gasoline-Ethanol Blend: Engine Performance and Emissions. Fuel. 2010, vol. 89, iss. 2, pp. 287–293. doi:10.1016/j.fuel.2009.06.017; Rasskazchikova T. V., Kapustin V. M., Karpov S. A. Ethanol as High–Octane Additive to Automotive Gasolines. Production and Use in Russia and Abroad. Chemistry and Technology of Fuels and Oils. 2004, vol. 40, iss. 4, pp. 203–210. doi:10.1023/B:CAFO.0000041215.14876.ce; Celik M. B. Experimental Determination of Suitable Ethanol–Gasoline Blend Rate at High Compression Ratio for Gasoline Engine. Applied Thermal Engineering. 2008, vol. 28, iss. 5–6, pp. 396–404, doi:10.1016/j.applthermaleng.2007.10.028; Delgado R. C. O. B., Araujo A. S., Fernandes V. J. Properties of Brazilian Gasoline Mixed with Hydrated Ethanol for Flex-Fuel Technology. Fuel Processing Technology. 2007, vol. 88, no. 4, pp. 365–368, doi:10.1016/j.fuproc.2006.10.010; Machado G. B., Barros J. E. M., Braga S. L., Braga C. V. M., Oliveira E. J. de, da Silva A. H. M. d. F. T., Carvalho L. d. O. Investigations on Surrogate Fuels for High-Octane Oxygenated Gasolines. Fuel. 2011, vol. 90, iss. 2, pp. 640–646. doi:10.1016/j.fuel.2010.10.024; Melo T. C. C. d., Machado G. B., Belchior C. R. P., Colaço M. J., Barros J. E. M., Oliveira E. J. de, Oliveira D. G. de. Hydrous Ethanol–Gasoline Blends – Combustion and Emission Investigations on a Flex-Fuel Engine. Fuel. 2012, vol. 97, pp. 796–804. doi:10.1016/j.fuel.2012.03.018; Ozcan M., Akman S. Determination of Cu, Co and Pb in Gasoline by Electrothermal Atomic Absorption Spectrometry Using Aqueous Standard Addition in Gasoline–Ethanol–Water Three-Component System. Spectrochimica Acta, Pt. B: Atomic Spectroscopy. 2005, vol. 60, iss. 3, pp. 399–402. doi:10.1016/j.sab.2004.12.001; Prasad P. R., Rama Rao K. S., Bhuvaneswari K., Praveena N., Srikanth Y. V. V. Determination of Ethanol in Blend Petrol by Gas Chromatography and Fourier Transform Infrared Spectroscopy. Energy Sources, Pt. A: Recovery, Utilization, and Environmental Effects. 2008, vol. 30, iss. 16. pp. 1534–1539. doi:10.1080/15567030701258444; Sastry G. S., Prasad P. R., Bhuvaneswari K. Determination of Alcohol in Petrol-Alcohol Mixtures. Indian Journal of Chemical Technology. 2004, vol. 11, pp. 323–325.; Pereira P. F., Marra M. C., Munoz R. A. A., Richter E. M. Fast Batch Injection Analysis System for on-Site Determination of Ethanol in Gasohol and Fuel Ethanol. Talanta, 2012, vol. 90, pp. 99–102. doi:10.1016/j.talanta.2012.01.004; Mendes G., Aleme H. G., Barbeira P. J. S. Determination of Octane Numbers in Gasoline by Distillation Curves and Partial Least Squares Regression. Fuel, 2012, vol. 97, pp. 131–136. doi:10.1016/j.fuel.2012.01.058; Lucklum R., Ke M., Zubtsov M. Two-Dimensional Phononic Crystal Sensor Based on a Cavity Mode. Sensors and Actuators B: Chemical. 2012, vol. 171–172, pp. 271–277. doi:10.1016/j.snb.2012.03.063; Oseev A., Zubtsov M., Lucklum R. Gasoline Properties Determination with Phononic Crystal Cavity Sensor. Sensors and Actuators B: Chemical. 2013, vol. 189, pp. 208–212. doi:10.1016/j.snb.2013.03.072; Zubtsov M., Lucklum R., Ke M., Oseev A., Grundmann R., Henning B., Hempel U. 2D Phononic Crystal Sensor with Normal Incidence of Sound. Sensors and Actuators A: Physical. 2012, vol. 186, pp. 118–124. doi:10.1016/j.sna.2012.03.017; Schmidt M.-P., Oseev A., Engel C., Brose A., Schmidt B., Hirsch S. Flexible Free-Standing SU-8 Microfluidic Impedance Spectroscopy Sensor for 3-D Molded Interconnect Devices Application. J. Sens. Sens. Syst. 2016, vol. 5, pp. 55–61. doi:10.5194/jsss-5-55-2016; Schmidt M.-P., Oseev A., Lucklum R., Zubtsov M., Hirsch S. SAW Based Phononic Crystal Sensor, Technological Challenges and Solutions. Microsyst Technol. 2016, vol. 22, pp. 1593–1599. doi:10.1007/s00542-015-2781-3; Luning Prak D. J., Morris R. E., Cowart J. S., Hamilton L. J., Trulove P. C. Density, Viscosity, Speed of Sound, Bulk Modulus, Surface Tension, and Flash Point of Direct Sugar to Hydrocarbon Diesel (DSH-76) and Binary Mixtures of NHexadecane and 2,2,4,6,6-Pentamethylheptane. J. Chem. Eng. Data. 2013, vol. 58, pp. 3536–3544. doi:10.1021/je400839x; Schmidt M.-P., Oseev A., Engel C., Brose A., Aman A., Hirsch S. A Novel Design and Fabrication of Multichannel Microfluidic Impedance Spectroscopy Sensor for Intensive Electromagnetic Environment Application. Procedia Engineering. 2014, vol. 87, pp. 88–91. doi:10.1016/j.proeng.2014.11.272; Sharma R. K., Gupta A. K. Detection/Estimation of Adulteration in Gasoline and Diesel Using Ultrasonics. In 2007 Intern. Conf. on Industrial and Information Systems. Peradeniya, Sri Lanka, 09–11 Aug. 2007. Piscataway, IEEE, 2007, pp 509–512. doi:10.1109/ICIINFS.2007.4579230; Wang Z N. A. Ultrasonic Velocities in Pure Hydrocarbons and Mixtures. The Journal of the Acoustical Society of America. 1991, vol. 89 (6), pp. 2725–2730.; Berryman J. G. Analysis of Ultrasonic Velocities in Hydrocarbon Mixtures. The Journal of the Acoustical Society of America. 1993, vol. 93 (5). doi:10.1121/1.405865; Schmelzer C. E. H., Żwirbla W., Rosenfeld E., Linde B. B. J. Acoustic Investigations of Pseudo-Stable Structures in Aqueous Solutions of Polyethylene Glycols. Journal of Molecular Structure. 2004, vol. 699, pp. 47–51. doi:10.1016/j.molstruc.2004.04.027; French R., Malone P. Phase Equilibria of Ethanol Fuel Blends. Fluid Phase Equilibria. 2005, vol. 228–229, pp. 27–40. doi:10.1016/j.fluid.2004.09.012; Dharmalingam K., Ramachandran K., Sivagurunathan P. Hydrogen bonding interaction between ethyl methacrylate and alcohols in non-polar solvents: An FTIR study. Main Group Chemistry. 2005, no. 4, pp. 241–246. doi:10.1080/10241220600649745.; Tôrres R. B., Marchiore A. C. M., Volpe P. L. O. Volumetric Properties of Binary Mixtures of (water+organic solvents) at Temperatures between T=288.15 K and T=303.15 K at p=0.1 MPa. The Journal of Chemical Thermodynamics. 2006, vol. 38, pp. 526–541. doi:10.1016/j.jct.2005.07.012; Mmereki B. T., Oathotse I., Ddamba W. A. A. Ultrasonic Speeds and Isentropic Compressibilities of {difurylmethane+(C1–C6) n-alkanol} Binary Mixtures at T=298.15 K. The Journal of Chemical Thermodynamics. 2010, vol. 42, pp. 1346–1351. doi:10.1016/j.jct.2010.05.016; Gliński J. Determination of the Conditional Association Constants from the Sound Velocity Data in Binary Liquid Mixtures. The Journal of Chemical Physics. 2003, vol. 118, pp. 2301–2307. doi:10.1063/1.1534579; Shukla R. K., Dixit S. N., Jain P., Mishra P., Sharma S. Ultrasonic Velocity and Isentropic Compressibility of Binary Fluid Mixtures at 298.15 K. Orbital. 2010, vol. 2, no. 4.; Sarkar L., Roy M. N. Studies on Liquid–Liquid Interactions of Some Ternary Mixtures by Density, Viscosity, Ultrasonic Speed and Refractive Index Measurements. Thermochimica Acta. 2009, vol. 496, pp. 124–128. doi:10.1016/j.tca.2009.07.011; Aliotta F., Gapiński J., Pochylski M., Ponterio R. C., Saija F., Salvato G. Excess Compressibility in Binary Liquid Mixtures. The Journal of Chemical Physics. 2007, vol. 126, 224508. doi:10.1063/1.2745292; Chechko V. E., Lokotosh T. V., Malomuzh N. P., Zaremba V. G., Gotsul'Sky V. Y. Clusterization and Anomalies of Fluctuations in Water-Alcohol Solutions of Low Concentrations. Journal of Physical Studies. 2003, vol. 7, pp. 175–183.; Allison S. K., Fox J. P., Hargreaves R., Bates S. P. Clustering and Microimmiscibility in Alcohol-Water Mixtures: Evidence from Molecular-Dynamics Simulations. Phys. Rev. B. 2005, vol. 71. doi:10.1103/PhysRevB.71.024201; https://re.eltech.ru/jour/article/view/380

  18. 18
    Academic Journal
  19. 19
    Academic Journal
  20. 20
    Academic Journal