Publications

  1. 54. Makovetskaya A., Kolesova E.P., Maslov V.G., Dubavik A., Gun’Ko Y.K., Orlova A.O. Photocatalytic properties of hybrid structures based on Titania nanoparticles and semiconductor quantum dots // Optical and Quantum Electronics - 2020, Vol. 52, No. 3, pp. 147 [IF: 1.055, SJR: 0.355]
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  2. 53. Kolesova E.P., Maslov V.G., Gun’ko Y.K., Orlova A.O. A Method for Estimating the Functionality of TiO2/Quantum Dot Multilayer Hybrid Structures Based on the Generation of Reactive Oxygen Species // Optics and spectroscopy - 2019, Vol. 127, No. 2, pp. 347-351 [IF: 0.716, SJR: 0.299]
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  3. 52. Kolesova E.P., Maslov V.G., Gun’ko Y.K., Orlova A.O. Photoinduced increase of electron transfer efficiency of QDs based hybrid structures // Proceedings of SPIE - 2019, Vol. 11207, pp. 1120720 [SJR: 0.238]
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  4. 51. Kolesova E.P., Maslov V.G., Safin F.M., Finn P., Cleary O., Volkov Y., Gun’ko Y.K., Orlova A.O. Photoinduced Charge Transfer in Hybrid Structures Based on Titanium Dioxide NPs with Multicomponent QD Exciton Luminescence Decay // Journal of Physical Chemistry C - 2019, Vol. 123, No. 23, pp. 14790-14796 [IF: 4.536, SJR: 1.652]
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  5. 50. Kolesova E.P., Safin F.M., Maslov V.G., Gun’ko Y.K., Orlova A.O. The Influence of Photoinduced Processes on a Quantum Dot Surface on the Electron Transfer Efficiency in TiO2 Nanoparticle/Quantum Dot Structures // Optics and spectroscopy - 2019, Vol. 127, No. 3, pp. 548-554 [IF: 0.716, SJR: 0.299]
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  6. 49. Safin F., Kolesova E.P., Maslov V.G., Gun'Ko Y.K., Baranov A.V., Fedorov A.V. Photochemically induced circular dichroism of semiconductor quantum dots // Journal of Physical Chemistry C - 2019, Vol. 123, No. 32, pp. 19979-19983 [IF: 4.536, SJR: 1.652]
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  7. 48. Sevid F.M., Visheratina A.K., Dubavik A., Veniaminov A.V., Maslov V.G., Orlova A.O. Chlorin e6 - CdSe/ZnS Quantum Dots Nanocomposites as Efficient Singlet Oxygen Generator // Optics and spectroscopy - 2019, Vol. 127, No. 6, pp. in press [IF: 0.716, SJR: 0.299]
  8. 47. Visheratina A.K., Purcell-Milton F., Gun'Ko Y.K., Orlova A.O. Circular Dichroism Spectroscopy as a Powerful Tool for Unraveling Assembly of Chiral Nonluminescent Aggregates of Photosensitizer Molecules on Nanoparticle Surfaces // Journal of Physical Chemistry A - 2019, Vol. 123, No. 37, pp. 8028-8035 [IF: 2.847, SJR: 0.969]
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  9. 46. Колесова Е.П., Маслов В.Г., Гунько Ю.К., Орлова А.О. Методика оценки функциональности многослойных гибридных структур TIO2/квантовая точка по генерации активных форм кислорода // Оптика и спектроскопия - 2019. - Т. 127. - № 8. - С. 325-328 [IF: 0.484]
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  10. 45. Колесова Е.П., Сафин Ф.М., Маслов В.Г., Гунько Ю.К., Орлова А.О. Влияние фотоиндуцированных процессов на поверхности квантовых точек на эффективность переноса электрона в структурах "наночастицы TIO2/квантовые точки" // Оптика и спектроскопия - 2019. - Т. 127. - № 9. - С. 490-497 [IF: 0.484]
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  11. 44. Gromova Y.A., Miropoltsev M.A., Cherevkov S.A., Maslov V.G., Baranov A.V., Fedorov A.V. Magnetic Circular Dichroism in 2D Colloidal Semiconductor Nanocrystals // Optics and spectroscopy - 2018, Vol. 125, No. 5, pp. 698-702 [IF: 0.716, SJR: 0.299]
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  12. 43. Hutchinson D., Muller J., Mccarthy J.E., Gun’ko Y.K., Verma N.K., Bi X., Di Cristo L., Kickham L., Movia D., Prina-Mello A., Volkov Y. Cadmium nanoparticles citrullinate cytokeratins within lung epithelial cells: Cadmium as a potential cause of citrullination in chronic obstructive pulmonary disease // International Journal of Chronic Obstructive Pulmonary Disease - 2018, Vol. 13, pp. 441-449 [IF: 3.157, SJR: 1.424]
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  13. 42. Kolesova E.P., Cleary O., Gun'Ko Y.K., Maslov V.G., Orlova A.O. Photoinduced electron transport in QDs-based hybrid structures with TiO2 nanoparticles // Journal of Physics: Conference Series - 2018, Vol. 1092, No. 1, pp. 012057 [SJR: 0.221]
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  14. 41. Kundelev E.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V. Circular dichroism of surface complexes based on quantum dots and azo dye // Chirality - 2018, Vol. 30, No. 3, pp. 261-267 [IF: 2.025, SJR: 0.522]
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  15. 40. Litvinov I.K., Belyaeva T.N., Salova A.V., Aksenov N.D., Leontieva E.A., Orlova A.O., Kornilova E.S. Quantum Dots based on Indium Phosphide (InP): the Effect of Chemical Modifications of the Organic Shell on Interaction with Cultured Cells of Various Origins // Cell and Tissue Biology - 2018, Vol. 12, No. 2, pp. 135-145 [SJR: 0.191]
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  16. 39. Visheratina A.K., Loudon A., Kuznetsova V.A., Orlova A.O., Gunko I.K., Baranov A.V., Fedorov A.V. Water-Soluble Conjugates of ZnS:Mn Quantum Dots with Chlorin e6 for Photodynamic Therapy // Optics and spectroscopy - 2018, Vol. 125, No. 1, pp. 94-98 [IF: 0.716, SJR: 0.299]
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  17. 38. Visheratina A.K., Orlova A.O., Purcell-Milton F., Kuznetsova V.A., Visheratin A., Kundelev E.V., Maslov V.G., Baranov A.V., Fedorov A.V., Gun’ko Y.K. Influence of CdSe and CdSe/CdS nanocrystals on the optical activity of chiral organic molecules // Journal of Materials Chemistry C - 2018, Vol. 6, No. 7, pp. 1759-1766 [IF: 5.256]
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  18. 37. Баженова А.С. Изучение изменений фотофизических характеристик люминесцирующих полупроводниковых квантовых точек различной структуры в ходе имиджинга клеток в культуре // Российский физиологический журнал им. И.М. Сеченова [Rossiiskii fiziologicheskii zhurnal imeni I.M. Sechenova] - 2018. - Т. 104. - № 6. - С. 676-682 [IF: 0.454]
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  19. 36. Вишератина А.К., Loudon A., Кузнецова В.А., Орлова А.О., Гунько Ю.К., Баранов А.В., Федоров А.В. Водорастворимые конъюгаты ZNS : MN квантовых точек и хлорина E6 для фотодинамической терапии // Оптика и спектроскопия - 2018. - Т. 125. - № 1. - С. 91-95 [IF: 0.484]
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  20. 35. Колесова Е.П., Орлова А.О., Маслов В.Г., Гунько Ю.К., Cleary O., Баранов А.В., Федоров А.В. Фотокаталитические свойства гибридных наноструктур на основе наночастиц TiO2 и полупроводниковых квантовых точек // Оптика и спектроскопия - 2018. - Т. 125. - № 1. - С. 96-100 [IF: 0.484]
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  21. 34. Gromova Y.A., Kurochkina M.A., Maslov V.G., Baranov A.V., Fedorov A.V., Orlova A.O. Energy Transfer in Rigid Solutions with Nonuniform Distribution of Components Based on Quantum Dots and Organic Molecules // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 88-92 [IF: 0.716, SJR: 0.299]
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  22. 33. Kolesova E.P., Orlova A.O., Maslov V.G., Gun’ko Y.K., Cleary O., Baranov A.V., Fedorov A.V. Photoinduced Processes in Hybrid Structures on the Basis of ТіO2 Nanoparticles and CdSe/ZnS Quantum Dots // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 106-109 [IF: 0.716, SJR: 0.299]
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  23. 32. Kundelev E.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V. Circular dichroism spectroscopy of complexes based on semiconductor quantum dots and chlorin e6 molecules // Optical Engineering - 2017, Vol. 56, No. 4, pp. 047102 [IF: 1.082, SJR: 0.403]
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  24. 31. Kuznetsova V.A., Visheratina A.K., Ryan A., Martynenko I.V., Loudon A., Maguire C., Purcell-Milton F., Orlova A.O., Baranov A.V., Fedorov A.V., Prina-Mello A., Volkov Y., Gun’ko Y.K. Enantioselective cytotoxicity of ZnS:Mn quantum dots in A549 cells // Chirality - 2017, Vol. 29, No. 8, pp. 403-408 [IF: 2.025, SJR: 0.522]
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  25. 30. Purcell-Milton F., Visheratina A.K., Kuznetsova V.A., Ryan A., Orlova A.O., Gun’ko Y.K. Impact of Shell Thickness on Photoluminescence and Optical Activity in Chiral CdSe/CdS Core/Shell Quantum Dots // ACS Nano - 2017, Vol. 11, No. 9, pp. 9207-9214 [IF: 13.942, SJR: 6.214]
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  26. 29. Reznik I.A., Gromova Y.A., Zlatov A.S., Baranov M.A., Orlova A.O., Moshkalev S.A., Maslov V.G., Baranov A.V., Fedorov A.V. Hybrid Structures Based on Quantum Dots and Graphene Nanobelts // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 114-119 [IF: 0.716, SJR: 0.299]
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  27. 28. Salova A.V., Belyaeva T.N., Leontieva E.A., Kornilova E.S. EGF receptor lysosomal degradation is delayed in the cells stimulated with EGF-Quantum dot bioconjugate but earlier key events of endocytic degradative pathway are similar to that of native EGF // Oncotarget - 2017, Vol. 8, No. 27, pp. 44335-44350 [IF: 5.168, SJR: 1.575]
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  28. 27. Visheratina A.K., Purcell-Milton F., Serrano-Garcia R., Kuznetsova V.A., Orlova A.O., Fedorov A.V., Baranov A.V., Gun’ko Y.K. Chiral recognition of optically active CoFe2O4 magnetic nanoparticles by CdSe/CdS quantum dots stabilised with chiral ligands // Journal of Materials Chemistry C - 2017, Vol. 5, No. 7, pp. 1692-1698 [IF: 5.256, SJR: 1.885]
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  29. 26. Annas K.I., Gromova Y.A., Orlova A.O., Maslov V.G., Fedorov A.V., Baranov A.V. FRET efficiency in surface complexes of CdSe/ZnS quantum dots with azo-dyes // Proceedings of SPIE - 2016, Vol. 9884, pp. 98843G [SJR: 0.238]
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  30. 25. Kolesova E.P., Orlova A.O., Maslov V.G., Gun’ko Y.K., Cleary O., Baranov A.V., Fedorov A.V. Aggregation of quantum dots in hybrid structures based on TiO2 nanoparticles // Proceedings of SPIE - 2016, Vol. 9884, pp. 988431 [SJR: 0.238]
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  31. 24. Kundelev E.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V. Circular dichroism spectroscopy of complexes of semiconductor quantum dots with chlorin e6 // Proceedings of SPIE - 2016, Vol. 9884, pp. 988433 [SJR: 0.238]
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  32. 23. Martynenko I.V., Kuznetsova V.A., Litvinov I.K., Orlova A.O., Maslov V.G., Fedorov A.V., Dubavik A., Purcell-Milton F., Gun’ko Y.K., Baranov A.V. Enantioselective cellular uptake of chiral semiconductor nanocrystals // Nanotechnology - 2016, Vol. 27, No. 7, pp. 075102-(1-8) [IF: 3.44, SJR: 1.056]
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  33. 22. Martynenko I.V., Orlova A.O., Maslov V.G., Fedorov A.V., Berwick K., Baranov A.V. The influence of phthalocyanine aggregation in complexes with CdSe/ZnS quantum dots on the photophysical properties of the complexes // Beilstein Journal of Nanotechnology - 2016, Vol. 7, pp. 1018-1027 [IF: 3.127, SJR: 0.769]
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  34. 21. Parfenov P.S., Litvin A.P., Ushakova E.V., Kolesova E.P., Fedorov A.V., Baranov A.V. Simulation analysis of atomic-force images of nanocrystal structures // Journal of Optical Technology - 2016, Vol. 83, No. 3, pp. 143-149 [IF: 0.299, SJR: 0.269]
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  35. 20. Reznik I.A., Gromova Y.A., Zlatov A.S., Baranov M.A., Orlova A.O., Moshkalev S.A., Maslov V.G., Baranov A.V., Fedorov A.V. Influence of the QD luminescence quantum yield on photocurrent in QD/graphene hybrid structures // Proceedings of SPIE - 2016, Vol. 9884, pp. 98843A [SJR: 0.238]
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  36. 19. Dadadzhanov D.R., Martynenko I.V., Orlova A.O., Maslov V.G., Fedorov A.V., Baranov A.V. The Formation of Molecular Aggregates of Sulfophthalocyanine in Complexes with Semiconductor Nanocrystals // Optics and spectroscopy - 2015, Vol. 119, No. 5, pp. 738–743 [IF: 0.716, SJR: 0.299]
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  37. 18. Martynenko I.V., Kuznetsova V.A., Orlova A.O., Kanaev P.A., Maslov V.G., Loudon A., Zakharov V.V., Parfenov P.S., Gun’ko Y.K., Baranov A.V., Fedorov A.V. Chlorin e6-ZnSe/ZnS quantum dots based system as reagent for photodynamic therapy // Nanotechnology - 2015, Vol. 26, No. 5, pp. 055102 [IF: 3.44, SJR: 1.056]
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  38. 17. Martynenko I.V., Visheratina A.K., Kuznetsova V.A., Orlova A.O., Maslov V.G., Fedorov A.V., Baranov A.V. Quantum dot-tetrapyrrole complexes as photodynamic therapy agents // Proceedings of SPIE - 2015, Vol. 9537, pp. 95372E [SJR: 0.238]
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  39. 16. Mukhina M.V., Maslov V.G., Baranov A.V., Fedorov A.V., Orlova A.O., Purcell-Milton F., Govan J., Gun’ko Y.K. Intrinsic chirality of CdSe/ZnS quantum dots and quantum rods // Nano Letters - 2015, Vol. 15, No. 5, pp. 2844–2851 [IF: 12.712, SJR: 6.211]
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  40. 15. Visheratina A.K., Alisova I.V., Kundelev E.V., Orlova A.O., Maslov V.G., Fedorov A.V., Baranov A.V. Complexes of CdSe/ZnS Quantum Dots with Chlorin E6 in Nonaqueous Media // Optics and spectroscopy - 2015, Vol. 119, No. 5, pp. 733–737 [IF: 0.716, SJR: 0.299]
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  41. 14. Visheratina A.K., Martynenko I.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V. Energy transfer efficiency in quantum dot/chlorin e6 complexes // Proceedings of SPIE - 2015, Vol. 9537, pp. 95372C [SJR: 0.238]
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  42. 13. Вишератина А.К., Орлова А.О., Маслов В.Г., Федоров А.В., Баранов А.В. Оптические свойства конъюгатов квантовых точек CdSe/ZnS и хлорина е6 в водном растворе // Оптический журнал - 2015. - Т. 82. - № 11. - С. 30-35
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  43. 12. Annas K.I., Gromova Y.A., Orlova A.O., Maslov V.G., Fedorov A.V., Baranov A.V. Photoinduced dissociation of complexes of cadmium selenide quantum dots with azo dye molecules // Journal of Optical Technology - 2014, Vol. 81, No. 8, pp. 439-443 [IF: 0.299, SJR: 0.269]
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  44. 11. Martynenko I.V., Kuznetcova V.V., Orlova A.O., Kanaev P., Gromova Y.A., Maslov V.G., Baranov A.V., Fedorov A.V. ZnSe/ZnS quantum dots-photosensitizer complexes: optical properties and cancer cell photodynamic destruction effect // Proceedings of SPIE - 2014, Vol. 9126, pp. 91263C-(1-8) [SJR: 0.238]
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  45. 10. Visheratina A.K., Martynenko I.V., Orlova A.O., Maslov V.G., Fedorov A.V., Baranov A.V., Gun’ko Y.K. Investigation of biocompatible complexes of Mn2+-doped ZnS quantum dots with chlorin e6 // Journal of Optical Technology - 2014, Vol. 81, No. 8, pp. 444-448 [IF: 0.299, SJR: 0.269]
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  46. 9. Gromova Y.A., Orlova A.O., Maslov V.G., Fedorov A.V., Baranov A.V. Fluorescence energy transfer in quantum dot/azo dye complexes in polymer track membranes // Nanoscale Research Letters - 2013, Vol. 8, No. 1, pp. 452-(1-6) [IF: 2.833, SJR: 0.782]
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  47. 8. Martynenko I.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V., Artemyev M. Energy transfer in complexes of water-soluble quantum dots and chlorin e6 molecules in different environments // Beilstein Journal of Nanotechnology - 2013, Vol. 4, No. 1, pp. 895-902 [IF: 3.127, SJR: 0.769]
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  48. 7. Orlova A.O., Gromova Y.A., Maslov V.G., Andreeva O.V., Baranov A.V., Fedorov A.V., Prudnikau A.V., Artemyev M.V., Berwick K. Reversible photoluminescence quenching of CdSe/ZnS quantum dots embedded in porous glass by ammonia vapor // Nanotechnology - 2013, Vol. 24, No. 33, pp. 335701-(1-5) [IF: 3.44, SJR: 1.056]
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  49. 6. Orlova A.O., Gromova Y.A., Maslov V.G., Fedorov A.V., Baranov A.V., Prudnikau A.V., Artemyev M.V. Formation of structures based on semiconductor quantum dots and organic molecules in track pore membranes // Journal of Applied Physics - 2013, Vol. 113, No. 21, pp. 214305-(1-6) [IF: 2.068, SJR: 0.746]
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  50. 5. Orlova A.O., Martynenko I.V., Maslov V.G., Fedorov A.V., Gun’ko Y.K., Baranov A.V. Investigation of Complexes of CdTe Quantum Dots with the AIOH-Sulphophthalocyanine Molecules in Aqueous Media // Journal of Physical Chemistry C - 2013, Vol. 117, No. 44, pp. 23425-23431 [IF: 4.536, SJR: 1.652]
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  51. 4. Orlova A.O., Gubanova M.S., Maslov V.G., Baranov A.V., Fedorov A.V., Artem'Ev M.V. Photophysical properties of CdSe/ZnS quantum dot-porphyrin surface complexes in aqueous media // Theoretical and Experimental Chemistry - 2012, Vol. 48, No. 1, pp. 62-71 [IF: 0.5, SJR: 0.169]
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  52. 3. Orlova A.O., Gromova Y.A., Savelyeva A.V., Maslov V.G., Artemyev M.V., Prudnikau A.V., Fedorov A.V., Baranov A.V. Track membranes with embedded semiconductor nanocrystals: structural and optical examinations // Nanotechnology - 2011, Vol. 22, No. 45, pp. 455201-(1-7) [IF: 3.44, SJR: 1.056]
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  53. 2. Orlova A.O., Adrianov V.E., Maslov V.G., Parfenov P.S., Baranov A.V., Fedorov A.V., Adrianov V.E., Orlova A.O., Fedorov A.V., Baranov A.V., Maslov V.G. Photophysical manifestations of interactions of quantum dots with ortho-phenanthroline molecules // Optics and Spectroscopy - 2010, Vol. 108, No. 6, pp. 934-940
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  54. 1. Orlova A.O., Gubanova M.S., Maslov V.G., Vinogradova G.N., Baranov A.V., Fedorov A.V., Gounko I. Spectral-luminescence properties of the complexes formed by similarly charged CdTe quantum dots and tetrasulfophthalocyanine molecules // Optics and Spectroscopy - 2010, Vol. 108, No. 6, pp. 927-933
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