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Publications

  1. 39Arefina I.A., Kurshanov D.A., Vedernikova A., Danilov D., Koroleva A.V., Zhizhin E., Sergeev A.A., Fedorov A.V., Ushakova E.V., Rogach A.L. Carbon Dot Emission Enhancement in Covalent Complexes with Plasmonic Metal Nanoparticles // Nanomaterials - 2023, Vol. 13, No. 2, pp. 223 [IF: 3.553, SJR: 0.919]
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  2. 38Kosolapova K.D., Koroleva A.V., Arefina I.A., Miruschenko M.D., Cherevkov S.A., Spiridonov I.G., Zhizhin E.V., Ushakova E.V., Rogach A.L. Energy-level engineering of carbon dots through a post-synthetic treatment with acids and amines // Nanoscale - 2023, Vol. 15, No. 19, pp. 8845-8853 [IF: 7.367, SJR: 2.038]
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  3. 37Zhang B., Wang B., Ushakova E., He B., Xing G., Tang Z., Rogach A., Qu S. Assignment of Core and Surface States in Multicolor-Emissive Carbon Dots // Small - 2023, Vol. 19, No. 31, pp. 2204158 [IF: 8.643, SJR: 3.785]
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  4. 36Das A., Kundelev E.V., Vedernikova A., Cherevkov S.A., Danilov D., Koroleva A.V., Zhizhin E., Tsypkin A.N., Litvin A.P., Baranov A.V., Fedorov A.V., Ushakova E.V., Rogach A.L. Revealing the nature of optical activity in carbon dots produced from different chiral precursor molecules // Light: Science and Applications - 2022, Vol. 11, No. 1, pp. 92 [IF: 14.098, SJR: 6.104]
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  5. 35Doring A., Ushakova E.V., Rogach A.L. Chiral carbon dots: synthesis, optical properties, and emerging applications // Light: Science and Applications - 2022, Vol. 11, No. 1, pp. 75 [IF: 14.098, SJR: 6.104]
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  6. 34Kundelev E.V., Strievich E.D., Tepliakov N.V., Murkina A.D., Dubavik A., Ushakova E.V., Baranov A.V., Fedorov A.V., Rukhlenko I.D., Rogach A.L. Structure-Optical Property Relationship of Carbon Dots with Molecular-like Blue-Emitting Centers // Journal of Physical Chemistry C - 2022, Vol. 126, No. 42, pp. 18170–18176 [IF: 4.536, SJR: 1.401]
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  7. 33Stepanidenko E.A., Skurlov I.D., Khavlyuk P.D., Onishchuk D.A., Koroleva A.V., Zhizhin E., Arefina I.A., Kurdyukov D.A., Eurov D.A., Golubev V.G., Baranov A.V., Fedorov A.V., Ushakova E.V., Rogach A.L. Carbon Dots with an Emission in the Near Infrared Produced from Organic Dyes in Porous Silica Microsphere Templates // Nanomaterials - 2022, Vol. 12, No. 3, pp. 543 [IF: 3.553, SJR: 0.919]
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  8. 32Zhu J., Hu J., Hu Q., Zhang X., Ushakova E.V., Liu K., Wang S., Chen X., Shan C., Rogach A., Bai X. White Light Afterglow in Carbon Dots Achieved via Synergy between the Room-Temperature Phosphorescence and the Delayed Fluorescence // Small - 2022, Vol. 18, No. 1, pp. 2105415 [IF: 8.643]
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  9. 31Das A., Arefina I.A., Danilov D.V., Koroleva A.V., Zhizhin E., Parfenov P.S., Kuznetsova V.A., Ismagilov A.O., Litvin A.P., Fedorov A.V., Ushakova E.V., Rogach A. Chiral carbon dots based on l/d-cysteine produced: Via room temperature surface modification and one-pot carbonization // Nanoscale - 2021, Vol. 13, No. 17, pp. 8058-8066 [IF: 7.367, SJR: 2.038]
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  10. 30Doring A., Xiong Y., Li Y., Schneider J., Cherevkov S.A., Ushakova E.V., Rogach A.L. Composite Nanospheres Comprising Luminescent Carbon Dots Incorporated into a Polyhedral Oligomeric Silsesquioxane Matrix // Journal of Physical Chemistry C - 2021, Vol. 125, No. 27, pp. 15094-15102 [IF: 4.536, SJR: 1.401]
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  11. 29Khavlyuk P.D., Stepanidenko E.A., Bondarenko D.P., Danilov D.V., Koroleva A.V., Baranov A.V., Maslov V.G., Kasak P., Fedorov A.V., Ushakova E.V., Rogach A.L. The influence of thermal treatment conditions (solvothermal Versus microwave) and solvent polarity on the morphology and emission of phloroglucinol-based nitrogen-doped carbon dots // Nanoscale - 2021, Vol. 13, No. 5, pp. 3070-3078 [IF: 7.367, SJR: 2.038]
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  12. 28Li D., Ushakova E.V., Rogach A., Qu S. Optical Properties of Carbon Dots in the Deep-Red to Near-Infrared Region Are Attractive for Biomedical Applications // Small - 2021, Vol. 17, No. 43, pp. 2102325 [IF: 8.643, SJR: 3.785]
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  13. 27Liang T., Liu E., Li M., Ushakova E.V., Kershaw S.V., Rogach A.L., Tang Z., Qu S. Morphology Control of Luminescent Carbon Nanomaterials: From Dots to Rolls and Belts // ACS Nano - 2021, Vol. 15, No. 1, pp. 1579-1586 [IF: 13.942, SJR: 5.554]
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  14. 26Litvin A.P., Zhang X., Ushakova E.V., Rogach A.L. Carbon Nanoparticles as Versatile Auxiliary Components of Perovskite-Based Optoelectronic Devices // Advanced Functional Materials - 2021, Vol. 31, No. 18, pp. 2010768 [IF: 12.124, SJR: 6.069]
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  15. 25Liu E., Liang T., Ushakova E., Wang B., Zhang B., Zhou H., Xing G., Wang C., Tang Z., Qu S., Rogach A.L. Enhanced Near-Infrared Emission from Carbon Dots by Surface Deprotonation // Journal of Physical Chemistry Letters - 2021, Vol. 12, No. 1, pp. 604-611 [IF: 9.353, SJR: 2.563]
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  16. 24Ragazzon G., Cadranel A., Ushakova E., Wang Y., Guldi D., Rogach A.L., Kotov N.A., Prato M. Optical processes in carbon nanocolloids // Chem - 2021, Vol. 7, No. 3, pp. 606-628
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  17. 23Stepanidenko E.A., Ushakova E.V., Fedorov A.V., Rogach A. Applications of carbon dots in optoelectronics // Nanomaterials - 2021, Vol. 11, No. 2, pp. 364 [IF: 3.553, SJR: 0.919]
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  18. 22 Zhang X., Zeng Q., Xiong Y., Ji T., Wang C., Shen X., Lu M., Wang H., Wen S., Zhang Y., Yang X., Ge X., Zhang W., Litvin A.P., Baranov A.V., Yao D., Zhang H., Yang B., Rogach A.L., Zheng W. Energy Level Modification with Carbon Dot Interlayers Enables Efficient Perovskite Solar Cells and Quantum Dot Based Light?Emitting Diodes // Advanced Functional Materials - 2020, Vol. 30, No. 11, pp. 1910530 [IF: 12.124, SJR: 6.069]
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  19. 21Arefina I.A., Khavlyuk P.D., Stepanidenko E.A., Dubavik A., Cherevkov S.A., Baranov A.V., Fedorov A.V., Ushakova E., Rogach A.L. Influence of heteroatoms on optical properties and photoluminescence kinetics of carbon dots // Journal of Physics: Conference Series - 2020, Vol. 1461, No. 1, pp. 012008 [SJR: 0.21]
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  20. 20Chang S., Ushakova E.V., Litvin A.P., Cherevkov S.A., Sokolova A.V., Gets D.S., Berestennikov A.S., Makarov S.V., Chen T., Rogach A., Zhong H. Tunable Mie Resonances of Tin-based Iodide Perovskite Islandlike Films with Enhanced Infrared Photoluminescence // Journal of Physical Chemistry Letters - 2020, Vol. 11, No. 9, pp. 3332-3338 [IF: 9.353, SJR: 2.563]
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  21. 19Kundelev E.V., Tepliakov N.V., Leonov M.Y., Maslov V.G., Baranov A., Fedorov A.V., Rukhlenko I.D., Rogach A.L. Toward Bright Red-Emissive Carbon Dots through Controlling Interaction among Surface Emission Centers // Journal of Physical Chemistry Letters - 2020, Vol. 11, No. 19, pp. 8121-8127 [IF: 9.353, SJR: 2.563]
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  22. 18Meng L., Ushakova E.V., Zhou Z., Liu E., Li D., Zhou D., Tan Z., Qu S., Rogach A. Microwave-assisted: In situ large scale synthesis of a carbon dots@g-C3N4 composite phosphor for white light-emitting devices // Materials Chemistry Frontiers - 2020, Vol. 4, No. 2, pp. 517-523 [SJR: 1.857]
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  23. 17Stepanidenko E.A., Arefina I.A., Khavlyuk P.D., Dubavik A., Bogdanov K.V., Bondarenko D.P., Cherevkov S.A., Kundelev E.V., Fedorov A.V., Baranov A.V., Maslov V.G., Ushakova E.V., Rogach A. Influence of the solvent environment on luminescent centers within carbon dots // Nanoscale - 2020, Vol. 12, No. 2, pp. 602-609 [IF: 7.367, SJR: 2.038]
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  24. 16Stepanidenko E.A., Khavlyuk P.D., Arefina I.A., Cherevkov S.A., Xiong Y., Doring A., Varygin G.V., Kurdyukov D.A., Eurov D.A., Golubev V.G., Masharin M.A., Baranov A.V., Fedorov A.V., Ushakova E., Rogach A. Strongly luminescent composites based on carbon dots embedded in a nanoporous silicate glass // Nanomaterials - 2020, Vol. 10, No. 6, pp. 1063 [IF: 3.553, SJR: 0.919]
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  25. 15Stepanidenko E.A., Kurshanov D.A., Khavlyuk P.D., Arefina I.A., Baranov A.V., Fedorov A.V., Ushakova E.V., Rogach A. Wide-range emitting carbon dots synthesized from O-phenylenediamine by microwave-assisted method // AIP Conference Proceedings - 2020, Vol. 2300, pp. 020124 [SJR: 0.177]
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  26. 14Ushakova E.V., Cherevkov S.A., Sokolova A.V., Li Y., Azizov R.R., Baranov M.A., Kurdyukov D.A., Stovpiaga E., Golubev V.G., Rogach A., Baranov A.V. Stable luminescent composite microspheres based on porous silica with embedded CsPbBr3 perovskite nanocrystals // ChemNanoMat - 2020, Vol. 6, No. 7, pp. 1080-1085 [IF: 2.937, SJR: 0.947]
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  27. 13Zhou Z., Ushakova E.V., Liu E., Bao X., Li D., Zhou D., Tan Z., Qu S., Rogach A. A Co-crystallization Induced Surface Modification Strategy with Cyanuric Acid Modulates the Bandgap Emission of Carbon Dots // Nanoscale - 2020, Vol. 12, No. 20, pp. 10987-10993 [IF: 7.367, SJR: 2.038]
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  28. 12Bao X., Ushakova E.V., Liu E., Zhou Z., Li D., Zhou D., Qu S., Rogach A. On-Off switching of the phosphorescence signal in a carbon dot/polyvinyl alcohol composite for multiple data encryption // Nanoscale - 2019, Vol. 11, No. 30, pp. 14250-14255 [IF: 7.367, SJR: 2.038]
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  29. 11Khavlyuk P.D., Arefina I.A., Bondarenko D.P., Bogdanov K.V., Stepanidenko E.A., Baranov A.V., Fedorov A.V., Ushakova E.V., Dubavik A., Rogach A. Synthesis and energy structure of optical transitions of the nitrogen and sulfur co-doped carbon dots // Journal of Physics: Conference Series - 2019, Vol. 1410, No. 1, pp. 012020 [SJR: 0.21]
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  30. 10Kundelev E.V., Tepliakov N.V., Leonov M.Y., Maslov V.G., Baranov A.V., Fedorov A.V., Rukhlenko I.D., Rogach A.L. Amino Functionalization of Carbon Dots Leads to Red Emission Enhancement // Journal of Physical Chemistry Letters - 2019, Vol. 10, No. 17, pp. 5111-5116 [IF: 9.353, SJR: 2.563]
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  31. 9Li D., Liang C., Ushakova E.V., Sun M., Huang X., Zhang X., Jing P., Yoo S.J., Kim J., Liu E., Zhang W., Jing L., Xing G., Zheng W., Tang Z., Qu S., Rogach A.L. Thermally Activated Upconversion Near-Infrared Photoluminescence from Carbon Dots Synthesized via Microwave Assisted Exfoliation // Small - 2019, Vol. 15, No. 50, pp. 1905050 [IF: 8.643, SJR: 3.785]
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  32. 8Stepanidenko E.A., Arefina I.A., Cherevkov S.A., Dubavik A., Xiong Y., Baranov A.V., Fedorov A.V., Ushakova E., Rogach A. Optical properties of carbon dots in solvents with different polarity // Proceedings of SPIE - 2019, Vol. 11207, pp. 112071X [SJR: 0.192]
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  33. 7Sun M., Liang C., Tian Z., Ushakova E., Li D., Xing G., Qu S., Rogach A.L. Realization of the Photostable Intrinsic Core Emission from Carbon Dots through Surface Deoxidation by Ultraviolet Irradiation // Journal of Physical Chemistry Letters - 2019, Vol. 10, No. 11, pp. 3094-3100 [IF: 9.353, SJR: 2.563]
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  34. 6Tepliakov N.V., Kundelev E.V., Khavlyuk P., Xiong Y., Leonov M.Y., Zhu .W., Baranov A.V., Fedorov A.V., Rogach A.L., Rukhlenko I.D. Sp2–sp3-Hybridized Atomic Domains Determine Optical Features of Carbon Dots // ACS Nano - 2019, Vol. 13, No. 9, pp. 10737-10744 [IF: 13.942, SJR: 5.554]
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  35. 5Xiong Y., Zhang X., Richter A.F., Li Y., Doring A., Kasak P., Popelka A., Schneider J., Kershaw S.V., Yoo S.J., Kim J., Zhang W., Zheng W., Ushakova E.V., Feldmann J., Rogach A.L. Chemically Synthesized Carbon Nanorods with Dual Polarized Emission // ACS Nano - 2019, Vol. 13, No. 10, pp. 12024-12031 [IF: 13.942, SJR: 5.554]
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  36. 4Zhou D., Jing P., Wang Y., Zhai Y., Li D., Xiong Y., Baranov A.V., Qu S., Rogach A.L. Carbon dots produced via space-confined vacuum heating: maintaining efficient luminescence in both dispersed and aggregated states // Nanoscale Horizons - 2019, Vol. 4, No. 2, pp. 388-395 [SJR: 2.992]
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  37. 3Zhu J., Bai X., Chen X., Shao H., Zhai Y., Pan G., Zhang H., Ushakova E.V., Zhang Y., Song H., Rogach A.L. Spectrally Tunable Solid State Fluorescence and Room-Temperature Phosphorescence of Carbon Dots Synthesized via Seeded Growth Method // Advanced Optical Materials - 2019, Vol. 7, No. 9, pp. 1801599 [IF: 6.875, SJR: 2.89]
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  38. 2Tian Z., Li D., Ushakova E., Maslov V.G., Zhou D., Jing P., Shen D., Qu S., Rogach A. Multilevel Data Encryption Using Thermal-Treatment Controlled Room Temperature Phosphorescence of Carbon Dot/Polyvinylalcohol Composites // Advanced Science - 2018, Vol. 5, No. 9, pp. 1800795 [IF: 9.034, SJR: 5.388]
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  39. 1Xiong Y., Schneider J., Ushakova E., Rogach A.L. Influence of molecular fluorophores on the research field of chemically synthesized carbon dots // Nano Today - 2018, Vol. 23, pp. 124-139 [IF: 17.476, SJR: 5.586]
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