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Prof. Boris F. Minaev, Ph.D.

Professor

Present

Bohdan Khmelnytsjyi National University of Cherkasy

Cherkasy

Ukraine

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Родился в 1943 г. в городе Свердловске. Жил с родителями в г. Новгород (1949-1953), Семипалатинск (1953), Алма-Ата (1953-1957), Караганда (1957-1962). Учился в Томском госуниверситете (ТГУ) на физическом факультете (1962-1967), в аспирантуре ТГУ по кафедре оптики и спектроскопии (1967-1971). Работал младшим научным сотрудником (м.н.с.) в Сибирском физико-техническом институте им. Кузнецова, м.н.с. по кафедре органической химии ТГУ (1971-1974). Защитил диссертацию к.ф.м.н. в 1974 в ТГУ по оптике и спектроскопии. В 1974-1989 гг работал в Карагандинском университете доцентом и профессором. В 1984 г. защитил диссертацию на соискание ученой степени доктора химических наук по физической химии "Теоретический анализ и прогнозирование эффектов спин-орбитального взаимодействия в молекулярной спектроскопии и химической кинетике" по совокупности работ. С 1989 г поныне работаю в г. Черкасы (Украина) : в Черкасском державном технологическом университете (1989-2007) и в национальном университете имени Богдана Хмельницкого (с 2007). Заведовал кафедрами химии, читал лекции по физической, органической и квантовой химии, по молекулярной спектроскопии, по биохимии. Около 20 лет работал в Швеции (университет Линчёпинга, Королевский технологический институт); в 2005-2006 гг работал в Норвежском университете науки и технологии в Трондхейме, в 2015-2016 гг - в институте химии АН Китая в Пекине. Автор 555 статей (из них 367 - в Скопусе). Индекс Хирша 45 (Скопус).

  • Analytical, Medical and Physical Chemistry
  • Including Nanoparticles for Pharmacology
  • Oxidative Enzymes
  • Reactive Oxygen Species in Cancer
  • Structure and Spectra of Steroid Hormones
  • Theory and Practice of Luminescence in Bioimaging
  • Oxygen Sensing
  • S. K Pedersen, K. Eriksen, H. Agren, B. F Minaev, N. N. Karaush-Karmazin. (2020). A Fully Conjugated Planar Heterocyclic [9]Circulene. J. Am. Chem. Soc., 142 (2020) 14058-14063. https://doi.org/10.1021/jacs.0c05898.
  • G. V. Baryshnikov, B. F. Minaev, and H.Agren. (2017). Theory and Calculation of the Phosphoresecnce Phenomenon. Chem. Rev., 2017, Vol. 117, No. 9, pp. 6500–6537. https://doi.org/10.1021/acs.chemrev.7b00060.
  • Minaev, B. F. (1980) Intensities of Spin-Forbidden Transitions in Molecular Oxygen and Selective Heavy- Atom Effects. International Journal of Quantum Chemistry, vol. 17, 367-374.
  • V. Minaeva, B. Minaev, A. Panchenko, V. Pasychnik. (2021). Computational study of IR, Raman, and NMR spectra of 4-methylmethcathinone drug. Journal of Molecular Modeling 27 (1), 1-15 (2021). https://doi.org/10.1007/s00894-020-04658-0.
  • V. A. Minaeva, B. F. Minaev, G. V. Baryshnikov, N.V. Surovtsev, O.P. Cherkasova. Temperature effects in low-frequency Raman spectra of corticosteroid hormones. Optics and Spectroscopy 118, 214-223 (2015). DOI: 10.1134/S0030400X15020149.
  • Boris F. Minaev, N. Arul Murugan, and Hans Agren. (2013). Dioxygen Spectra and Bioactivation. International Journal of Quantum Chemistry, 2013, 113, 1847–1867. https://doi.org/10.1002/qua.24390.
  • Boris F. Minaev, Valentina A. Minaeva, Yurij V. Evtuhov. (2009). Quantum-Chemical Study of the Singlet Oxygen Emission. International Journal of Quantum Chemistry, Vol 109, 500–515. https://doi.org/10.1002/qua.21783.
  • Gužauskas, M.; Narbutaitis, E.; Volyniuk, D.; Baryshnikov, GV.; Minaev, B.; Chao, Y.-C.; Chang, C.-C.; Rutkis, M.; Grazulievicius J. (2021) Polymorph acceptor-based triads with photoinduced TADF for UV sensing. Chemical Engineering Journal 425, 131549.
  • Boris Minaev, Xin Li, Zhijun Ning, He Tian and Hans Ågren. Organometallic Materials for Electroluminescent and Photovoltaic Devices. In: Organic Light Emitting Diode – Material, Process and Devices. InTech, Rieka, 2011, pp. 62-100.
  • Ågren, H.; Vahtras, O., Minaev, B. (1996). Response theory and calculations of spin-orbit coupling phenomena in molecules. Advances Quantum Chemistry, (1996). Vol. 27, pp. 71-162. https://doi.org/10.1016/S0065-3276(08)60251-8.
  • Minaeva, V.; Panchenko, A.; Karaush-Karmazin, N.; Nycz, J.; Minaev B. (2023) Manifestation of Intermolecular Interactions in the IR Spectra of 2-and 4-Methylmethcathinones Hydrochlorides: DFT Study and Hirshfeld Surfaces Analysis. Biointerface Res. Appl. Chem 13, 202.
  • B. Minaev. Magnetic Properties of Reactive Oxygen Species and their Possible Role in Cancer Therapy. Archive Cancer Sci. Therapy. 2024; 8(1): 048-053. Available from: https://dx.doi.org/10.29328/journal.acst.1001044.
  • Swoboda, D.; Nycz, J.E.; Karaush-Karmazin, N.; Minaev, B.; Książek, M. (2022) Synthesis and Spectroscopic Characterization of Selected Phenothiazines and Phenazines Rationalized Based on DFT Calculation. Molecules, 27 (21), 7519.
  • Minaev, B.F. Dioxygen and reactive oxygen species’ paramagnetic properties are important factors in dermatology. International Journal of Dermatology and Clinical Research, 8 (1), 016-023 (2022).
  • Minaev, B.F. (1978). Spin-orbit interaction in molecules and mechanism of the external magnetic field effect on luminescence. Optics and Spectroscopy, Vol. 44, No. 2, pp. 256-260.
  • Minaev, B. The spin of dioxygen as the main factor in pulmonology and respiratory care. Archives of Pulmonology and Respiratory Care, 8 (1), 028-033 (2022).
  • Minaev, B.; Minaeva, V.; & Ågren, H. (2009). Theoretical Study of the Cyclometalated Iridium(III) Complexes Used as Chromophores for Organic Light-Emitting Diodes. J. Phys. Chem. A. Vol. 113, pp. 726-735. https://doi.org/10.1021/jp807429h.
  • Minaev, B.; Ågren, H. & De Angelis, F. (2009). Theoretical design of phosphorescence parameters for organic electro-luminescence devices based on iridium complexes. Chemical Physics, Vol. 358, pp. 245-257. https://doi.org/10.1016/j.chemphys.2009.02.014.
  • Minaev, B.; Jansson, E. & Lindgren, M. (2006). Application of density functional theory for studies of excited states and phosphorescence of platinum(II) acetylides. J. Chem. Physics, Vol. 125, pp. 094306-094313. https://doi.org/10.1016/j.jlumin.2006.03.019.
  • Minaev, B. & Ågren, H. (2005). Theoretical DFT study of phosphorescence from porphyrins. Chem. Physics, Vol. 315, pp. 215-239. https://doi.org/10.1016/j.chemphys.2005.04.017.
  • Wu, H. Gu, L.; Baryshnikov, G.V.; Wang, H.; Minaev, B.F.; H. Ågren, H.’ Zhao, Y. (2020). Molecular phosphorescence in polymer matrix with reversible sensitivity. ACS applied materials & interfaces 12 (18), 20765-20774. https://doi.org/10.1021/acsami.0c04859.
  • Minaev, B.; Wang, Y.H.; Wang, C.K.; Luo, Y. & Ågren, H. (2005). Density functional study of vibronic structure of the first absorption Qx band in free-base porphin. Spectrochimica Acta, A. Vol. 65, pp. 308-323. https://doi.org/10.1016/j.saa.2005.10.047.
  • VA Litvin, BF Minaev, GV Baryshnikov. Synthesis and properties of synthetic fulvic acid derived from hematoxylin. Journal of Molecular Structure 1086, 25-33 (2015).
  • Minaev, B.F.; da Silva, R.S.;O Panchenko, O.; Ågren, H. (2023). Prediction of new spin-forbidden transitions in the N2 molecule—the electric dipole A′ 5Σg+→ A3Σu+ and magnetic dipole a′ 1Σu−← A3Σu+ transitions. The Journal of Chemical Physics, 158 (8), 084304.
  • Xin Li, Boris Minaev, Hans Ågren, and He Tian. (2011) Density Functional Theory Study of Photophysical Properties of Iridium(III) Complexes with Phenylisoquinoline and Phenylpyridine Ligands. J. Phys. Chem. C. 2011, 115, 20724–20731. https://doi.org/10.1021/jp206279g.
  • Boris Minaev (2019). How cofactor-free oxygenases can overcome spin prohibition in substrates oxygenation by dioxygen. Chem. Phys., 2019, Vol. 521, pp. 61-68. https://doi.org/10.1016/j.chemphys.2019.01.021.
  • VA Litvin, BF Minaev. Spectroscopy study of silver nanoparticles fabrication using synthetic humic substances and their antimicrobial activity. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 108, 115-122 (2013).
  • B. F. Minaev. (1999). The singlet oxygen absorption to the upper state of the Schumann-Runge system. Phys. Chem. Chem. Phys., 1999, 1, 3403-3413. https://doi.org/10.1039/A903404H.
  • Boris Minaev, G. V. Baryshnikov and H, Agren. Principles of phosphorescent organic light emitting devices. Phys. Chem. Chem. Phys., 16 (2014) 1719-1758. https://doi.org/10.1039/C3CP53806K.
  • N.M. Karaush-Karmazin, B.F. Minaev, V.A. Minaeva. (2024) Hirshfeld Surfaces Analysis of Intermolecular Interaction in the Series of Steroid Hormone Molecular Crystals. Eurasian journal of chemistry 113 (1), 43-55. https://doi.org/10.31489/2959-0663/1-24-8.
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