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005.007.01
005.007.02
See Russian version.
Theses prepared for submission
Postgraduate
Fields of study
Междисциплинарная кафедра подготовки кадров высшей квалификации
Admission to the postgraduate
Прием в целевую аспирантуру
Список аспирантов (на 1 июня 2025 года)
Противодействие коррупции
Нормативные правовые и иные акты в сфере противодействия коррупции
Методические материалы
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Статистическо-финансовая отчетность ИАПУ ДВО РАН
Комиссия по соблюдению требований к служебному поведению и урегулированию конфликта интересов
Обратная связь для сообщений о фактах коррупции
Sergeev Aleksandr Aleksandrovich
Degree:
PhD (Phys.-Math.)
Position:
senior scientific employee
Room:
117
Internal Phone:
3-12
Email:
Sergeev@iacp.dvo.ru
Publications:
2022
2018
2017
2016
2015
2014
2013
2012
Article
Chapter
Tezis
2016. A.Yu. Mironenko, A.A. Sergeev, A.E. Nazirov, E.B. Modin, S.S. Voznesenskiy, S.Yu. Bratskaya, H2S optical waveguide gas sensors based on chitosan/Au and chitosan/Ag nanocomposites // Sensors and Actuators B: Chemical. – 2016. – Vol. 225. – P. 348
2013. Thin chitosan films for optical gas sensors
2017. A.A. Sergeev, A.Yu. Mironenko, A.E. Nazirov, A.A. Leonov, S.S. Voznesenskii. Nanocomposite Polymer Structures for Optical Sensors of Hydrogen Sulfide // Technical Physics, 2017, Vol. 62, No. 8, pp. 1277–1280
2017. Voznesenskiy S.S., Sergeev A.A., Mirochnik A.G., Leonov A.A., Petrochenkova N.V., Shishov A.S., Emelina T.B., Kulchin Yu.N.. Specific features of europium tris-benzoylacetonate sensor response to gaseous ammonia // Sensors and Actuators B, 246 (2017), p. 46–52
2014. Petrochenkova N.V., Mirochnik A.G., Shishov A.S., Sergeev A.A., Voznesenskii S.S. Optical Chemosensor Properties Of Europium(Iii) Tris(B-Diketonates) // Russian Journal of Physical Chemistry A. 2014. Vol. 88. No. 1. P. 126-130.
2017. Mironenko A. Y., Tutov M.V., Sergeev A.A., Voznesenskiy S.S., BratskayaS.Yu. On/off rhodamine based fluorescent probe for detection of Au and Pd in aqueous solutions //Sensors and Actuators B: Chemical. – 2017. – Т. 246. – С. 389-394.
2013. Voznesenskiy S.S., Sergeev A.A., Mironenko A.Yu., Bratskaya S.Yu., Kulchin Yu.N. Integrated-optical sensors based on chitosan waveguide films for relative humidity measurements // Sensors and Actuators B. 2013. Vol.188. P.482-487. DOI: 10.1016/j.snb.2013.07.043. SWITZERLAND. LUSANNE: ELSEVIER SCIENCE SA. ISSN 0925-4005.
2017. Sergeev A. A., Voznesenskiy S.S., Galkina A.N., Postnova I.V. Modification of Optical Properties of CdS-silicate Nanocomposites by Thermal Annealing //Physics Procedia. – 2017. – Т. 86. – С. 11-14.
2012.
2015.
2012. Voznesenskiy S.S., Sergeev A.A., Mironenko A.Yu., Bratskaya S.Yu., Kolchinskiy V. A. Effect of relative humidity on the optical and waveguide properties of thin chitosan films // Technical Physics Letters. USA. New York: MAIK NAUKA/Interperiodica/Springer. 2012. Vol.38. No.3. P.228-230. 1063-7850, e-1090-6533
2016. A.A. Sergeev, S.S. Voznesenskiy, A.N. Galkina, Yu.V. Kuznetsova, I.D. Popov, A.A. Rempel, I.V. Postnova, Y.A. Shchipunov. Nanocomposites based on CdS quantum dots for laser control devices // Solid State Phenomena. - 2016. - Vol. 245. - P. 67-71
2016.
2017.
2016.
2012.
2018. -
2016. M.S. Vasilyeva, V.S. Rudnev, A.A. Zvereva, K.N. Kilin, A.A. Sergeev, K.A. Sergeeva, A.V. Nepomnyaschiy, S.S. Voznesenskiy, A.Yu. Ustinov, Characterization and photocatalytic activity of SiO2, FeOx coatings formed by plasma electrolytic oxidation of titanium // Surface and Coatings Technology. – 2016. - Vol. 307(C). - 1310-1314
2014. Mironenko A., E. Modin, A. Sergeev, S. Voznesenskiy, S. Bratskaya. Fabrication and Optical Properties of Chitosan/Ag Nanoparticles Thin Film Composites // Chemical Engineering Journal. 2014. Vol. 244. P. 457-463. Netherlands. Amsterdam: Elsevier. ISSN 1385-8947.
2015. A. Sergeev, S. Voznesenskiy. Specific features of chitosan waveguides optical response formation to changes in the values of relative humidity / Optical Materials 43 (2015) 33–35
2022. Stanislav O. Gurbatov, Vladislav Puzikov, Artem Cherepakhin, Eugeny Mitsai, Natalie Tarasenka, Alexander Shevlyagin, Aleksandr Sergeev, Sergei A. Kulinich, Aleksandr A. Kuchmizhak / Hybrid Au@Si microspheres produced via laser irradiation in liquid for nonlinear photonics // Optics & Laser Technology 2022, 147, 107666.
2014. Mironenko A., A. Sergeev, S. Voznesensky, S. Bratskaya. Thin chitosan films for optical gas sensors // Key Engineering Materials. 2014. Vol. 605. P. 536-539. Switzerland. Pfaffikon: Trans Tech Publications Inc. ISSN 1013-9826.
2012.
2014. Voznesenskiy S. S., A. A. Sergeev, A. N. Galkina, Yu. N. Kulchin, Yu. A. Shchipunov, I. V. Postnova. Laser-induced photodynamic effects at silica nanocomposite based on cadmium sulphide quantum dots // Optics Express. 2014. Vol. 22. Issue 2. P. 2105-2110. USA. Washington: Optical Society of America. ISSN 1094-4087
2016. Mirochnik A.G., Petrochenkova N.V., Shishov A.S., Bukvetskii B.V., Emelina T.B., Sergeev A.A., Voznesenskii S.S. Europium(III) tris-dibenzoylmethanate as an efficient chemosensor for detection of ammonia // Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy. - 2016. - Vol. 155. - P. 111-115.
2017. Sergeev, A.A. Leonov, D.G. Kamenev, S.S. Voznesenskii, Yu.N. Kul’chin. A Sensor System Based on a Luminescent Protein Complex in a Biopolymer Matrix for Detecting Small Concentrations of Hydrogen Sulfide in Aqueous Solutions // Technical Physics Letters, 2017, Vol. 43, No. 9, pp. 835–838
2014. Galkina A.N., Sergeev A.A. The structural characteristic features of the nanocomposite systems of quantum dots CdS in the THEOS gel matrix by the method of small-angle x-ray scattering // Solid State Phenomena. 2014. Vol. 213. P. 216-221. Switzerland. Zuerich: Trans Tech Publications Ltd. ISSN 1662-9779.
2014. Sergeev A., S. Voznesenskiy, A. Galkina, A. Nepomnyaschiy, K.M. Sergeeva. Photodynamic effects in nanocomposites based on quantum dots of cadmium sulfide embedded in a silicate matrix, in their interaction with the laser beam // Solid State Phenomena. 2014. Vol. 213. P. 186-191. Switzerland. Zuerich: Trans Tech Publications Ltd. ISSN 1662-9779.
2022. A.V. Shevlyagin et al. Mg2Si is the new black: Introducing a black silicide with >95% average absorption at 200–1800 nm wavelengths // Applied Surface Science. - 2022. - V. 602. - PP. 154321.
2016.
2013.
2016. M.S. Vasilyeva, V.S. Rudnev, A.A. Zvereva, K.N. Kilin, A.A. Sergeev, K.A. Sergeeva, A.V. Nepomnyaschiy, S.S. Voznesenskiy, A.Yu. Ustinov, Characterization and photocatalytic activity of SiO2, FeOx coatings formed by plasma electrolytic oxidation of titanium // Surface and Coatings Technology. – 2016. - Vol. 307(C). - 1310-1314
2016. Sergeev A., Voznesenskiy S., Evgenov N., Galkina A., Postnova I. Thermal modification of optical properties of silicate nanocomposites based on cadmium sulfide quantum dots // J. Nanophoton. - 2016. - Vol. 10(3). - P. 033510.
2015. S. S. Voznesenskiy, A. A. Sergeev, I. V. Postnova, A. N. Galkina, Yu. A. Shchipunov and Yu. N. Kulchin. Dynamic laser-induced effects in nanocomposite systems based on the cadmium sulfide quantum dots in a silicate matrix / Optics Express, 2015, Vol. 23, Issue 4, pp. 4415-4420.