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您当前所在的位置: 首页 >> 教师风采 >> 师资力量 >> 按类别 >> 高级讲师 >> 正文

阿·尤·格里什科高级讲师级研究员

Grishko Aleksei

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联系方式 讲授课程
主要研究方向 职位 高级讲师级研究员

阿·尤·格里什科

Grishko Aleksei

А. Ю. Гришко









Grishko Aleksei


姓名Name:

        Grishko Aleksei

出生Birth:

        1993年04月

学位Degree:

        PhD

职称Academic Title:

        senior lecturer-level Research fellow

电话Phone:

        19830798815

办公Office:

        1st Laboratory Building, Room 452

邮箱Email:

        grishko@smbu.edu.cn




■ 个人简介/Biography-Short  Description

  

 Dr. Grishko Aleksei is a senior lecturer-level Research fellow at Shenzhen MSU-BIT University. He received his bachelor’s, master’s and PhD degrees as the faculty of Material’s Science at Lomonosov Moscow State University. He completed an internship at Fraunhofer FEP in Dresden (Germany) and worked for EuroSibEnergo Distributed Generation in Russia where he developed technologies for the solar cell industry.

His main expertise is in materials characterization (mainly optical spectroscopy, electrical measurements), solid state chemistry/physics and tailored experiment design. He worked with wide range of materials: MOFs (metal-organic frameworks), thin films, semiconductors (A2B6, metal halides, halide perovskites). His research experience covers the fabrication and characterization of nanoparticles, thin films, powders, and single crystals. His expertise also extends to scientific instrument design and development. Over the years he designed and built: modular luminescence microscope, high precision photometer, spin-coating device, EQE measurement with bias light for solar cells characterization, TREL (time-resolved electroluminescence) measurement setup, spray-pyrolysis deposition instrument, etc. He integrates CAD modelling, electrical circuit design, programming, FDM/SLA 3D printing, mechanical processing and optical engineering into his research.

He has published 21 papers (14 in JCR Q1, including Nature Nanotechnology, Materials Horizons, Chemistry of Materials, Journal of Power Sources), 13 patents (including 2 international patents).






■ 教育经历/Education



□ 2017-2022 Department of Materials Science, Lomonosov Moscow State University,PhD degree
□ 2015-2017 Department of Materials Science, Lomonosov Moscow State University,Master’s degree
□ 2011-2015 Department of Materials Science, Lomonosov Moscow State University,Bachelor’s degree



■ 工作经历/Work  Experience



□ 2022.10-present Shenzhen MSU-BIT University, Faculty of Material’s science, senior lecturer-level Research fellow

□ 2018.10-2022.05 Moscow State University, Faculty of Material’s science, Junior research scientist

□ 2017.10-2018.07 EuroSibEnergo Distributed Generation, Specialist

□ 2016.04-2016.07 Fraunhofer Institute for Organic Electronics, Intern

          



■ 研究领域/  Research topics




□ Electronic & photonic materials, energy materials

□ Materials synthesis: nanoparticles, think films, single crystals
□ Materials characterization: optical spectroscopy, diffraction studies, electrical measurements; in situ/in operando studies

□ Solid state physics, solid state chemistry





■ 主讲课程/Teaching  experience




□ Since 2022 – Lectures and practice course on Raman spectroscopy for udergraduate students - 44 Hours/year.

□ Since 2022 – Practice course on Raman spectroscopy for master’s students - 44 Hours/year.





■ 荣誉奖励/Rewards




□ 2018      LG Chem Scholarship. Moscow, Russia

□ 2018      1st award at XXV Lomonosov International Conference of Young Researchers. Moscow, Russia

□ 2018      Medal of Russian Academy of Science for undergraduate students. Moscow, Russia

□ 2016      Prize Winner, Academician Viktor Ivanovich Spitsyn Award

□ 2015      Medal "The future of Russian chemistry"

□ 2015      Best poster award, XVII International Krutyn Summer School. Krutyn, Poland

□ 2015      1st award at XXV Mendeleev International Conference of Young Researchers, Tomsk, Russia

□ 2014      1st award at XXIV Mendeleev International Conference of Young Researchers, Volgograd, Russia

□ 2014      1st award at XXI Lomonosov International Conference of Young Researchers, Moscow, Russia






■ 社会活动/Social activity








■ 科研工作/Scientific projects




□ 2018-07 至 2022-05, Development of new approaches to the creation and improvement of stability of photoactive materials based on hybrid halide perovskites using polyhalide melts, 资助经费:1000万元, 参与

□ 2019-04 至 2022-04. Advanced inorganic and hybrid functional materials, biomaterials and nanomaterials for key areas of development of the Russian Federation, 资助经费:85 万元, 参与

□ 2018-05 至 2021-02, New approaches to the production of thin films and single crystals of hybrid organic perovskites for application in photovoltaics and optoelectronics, 资助经费:150 万元, 参与

□ 2018-05 至 2020-08, A comprehensive study of the fundamental dependences of the optical and electronic properties of halide perovskites on composition for creating semitransparent perovskite solar cells, 资助经费:40 万元, 参与

□ 2017-05 至 2020-05, Investigation and development of new materials for solar energetics, 资助经费:115 万元, 参与

□ 2018-05 至 2019-06, Design of novel functional materials and technologies of their production based on fundamental achievements of inorganic chemistry, 资助经费:54 万元, 参与

□ 2016-05 至 2017-03, Solar cells on hybrid perovskite-like halides for use in photonics and alternative energy, 资助经费:87 万元, 参与

□ 2015-05 至 2016-05, Development of luminescent ink for writing and inkjet printing, 资助经费:115 万元, 主持


 




■代表性成果(论文 )/Representative results (papers)




Papers:

1) Sobina, I. O., Tyurin-Kuzmin, P. A., Pervushin, N. V., Kudryavtsev, A. A., Bozhev, I. V., Grishko, A. I., Miakonkikh A.V., Lomovskaya Y.V., Dresvyankin D.N., Dyakov S.A., Eliseev A.A.,  Osminkina, L. A. (2025). Gold-modified silicon microneedles for real-time SERS analysis and drug delivery at single-cell resolution. Microchemical Journal, 114178. DOI: https://doi.org/10.1016/j.microc.2025.114178. IF = 4.9.

2) Grishko, A. I., Eliseev, A. A., Shneiderman, A. A., & Maksimov, E. G. (2024). Enabling Defect Control or Polyiodide Formation Regimes in Halide Perovskites // Materials Chemistry and Physics, 129978. DOI: 10.1016/j.matchemphys.2024.129978. IF = 4.3.

3) Yi, S., Yang, M., Yu, Y., Li, Z., Zhang, D., Han, F., Grishko, A., Li, Y., Qin, Q. and Zhou, B. (2024). Highly sensitive flexible SERS substrates with a sandwich structure for rapid detection of trace pesticide residues // Applied Surface Science, 654, p.159455. DOI: 10.1016/j.apsusc.2024.159455. IF=6.7.

4) Pustovalova, A.A., Loktionov, P.A., Speshilov, I.O., Pichugov, R.D., Grishko, A.Y., Glazkov, A.T. and Antipov, A.E., (2023). Cost-effective electrodes based on mixed iridium-zirconium oxides for vanadium electrolyte rebalancing cell // Journal of Power Sources, 576, p.233211. DOI: http://dx.doi.org/10.1016/j.jpowsour.2023.233013. IF=9.719

5) Grishko, A., Chumakov, A., Komkova, M., Marchenko, E., Davydok, A., Krywka, C., Roth, S., Tarasov, A., Goodilin, E., Eliseev, A. (2023) Evidence for polarization-induced phase transformations and degradation in CH3NH3PbI3 // Nano Research.  DOI: 10.1007/s12274-023-5652-8. IF=8.897.

6) Pichugov, R., Loktionov, P., Pustovalova, A., Glazkov, A., Grishko, A., Konev, D., Petrov, M., Andrey Usenko, Antipov, A. (2023). Restoring capacity and efficiency of vanadium redox flow battery via controlled adjustment of electrolyte composition by electrolysis cell // Journal of Power Sources, 569, 233013. DOI: 10.1016/j.jpowsour.2023.233013. IF=9.719

7) Shestimerova T.A., Bykov A.V., Kuznetsov A.N., Grishko A.Y., Wei Z., Dikarev E.V., Shevelkov A.V. (2022). Pattern of covalent and non-covalent interactions within the pentaiodide anion in the structure of (3-HOC5H9NH2)I5 // Zeitschrift für anorganische und allgemeine Chemie. V. 648, issue 15. DOI: 10.1002/zaac.202200039. IF=1.414

8) Voronin, O. S., Grishko, A. Y., Finkelberg, Y. M., Petrov, A. A., Goodilin, E. A., Tarasov, A. B. (2022). Iodine Solution Treatment in Nonpolar Solvents as a Facile Approach to Improve the Morphology and Photostability of Perovskite Films // The Journal of Physical Chemistry Letters. – Т. 13. – С. 2695-2703. DOI: 10.1021/acs.jpclett.2c00331. IF=6.475

9) Petrov, A.A., Fateev, S.A., Grishko, A.Y., Ordinartsev, A.A., Petrov, A.V., Seregin, A.Y., Dorovatovskii, P.V., Goodilin, E.A. and Tarasov, A.B. (2021). Optical properties and electronic structure of methylammonium iodocuprate as an X-ray scintillator. Mendeleev Communications, 31(1), pp.14-16. DOI: 10.1016/j.mencom.2021.01.003. IF=1.786

10) Grishko, A. Y., Zharenova, E. A., Goodilin, E. A., & Tarasov, A. B. (2021). Solvent-free deposition of hybrid halide perovskites onto thin films of copper iodide p-type conductor. Mendeleev Communications, 31(2), 163-165. DOI: 10.1016/j.mencom.2021.03.006. IF=1.786

11) Saidzhonov, B. M., Zaytsev, V. B., Eliseev, A. A., Grishko, A. Y., & Vasiliev, R. B. (2020). Highly Luminescent Gradient Alloy CdSe1–xSx Nanoplatelets with Reduced Reabsorption for White-Light Generation. ACS Photonics, 7(11), 3188-3198. DOI: 10.1021/acsphotonics.0c01246. IF=7.529

12) Grishko, A. Y., Eliseev, A. A., Goodilin, E. A., Tarasov, A. B. (2020). Measure is Treasure: Proper Iodine Vapor Treatment as a New Method of Morphology Improvement of Lead-Halide Perovskite Films. Chemistry of Materials, 32(21), 9140-9146. DOI: 10.1021/acs.chemmater.0c02289. IF=9.811

13) Udalova, N. N., Nemygina, E. M., Zharenova, E. A., Tutantsev, A. S., Sudakov, A. A., Grishko, A. Y., Belich N.A., Goodilin E.A., Tarasov, A. B. (2020). New Aspects of Copper Electrode Metamorphosis in Perovskite Solar Cells. The Journal of Physical Chemistry C, 124(45), 24601-24607. DOI: 10.1021/acs.jpcc.0c06608. IF=4.126

14) Fateev, S. A., Petrov, A. A., Ordinartsev, A. A., Grishko, A. Y., Goodilin, E. A., & Tarasov, A. B. (2020). Universal Strategy of 3D and 2D Hybrid Perovskites Single Crystal Growth via In Situ Solvent Conversion. Chemistry of Materials, 32(22), 9805-9812. DOI: 10.1021/acs.chemmater.0c04060. IF=9.811

15) Turkevych I., Kazaoui S., Belich N., Grishko A., Fateev S., Petrov A., Goodilin E., Graetzel M., Tarasov A. (2019). Strategic advantages of reactive polyiodide melts for scalable perovskite photovoltaics. Nature nanotechnology, 14(1), 57. DOI: 10.1038/s41565-018-0304-y. IF=39.21

16) Grishko, A. Y., Petrov, A. A., Goodilin, E. A., & Tarasov, A. B. (2019). Patterned films of a hybrid lead halide perovskite grown using space-confined conversion of metallic lead by reactive polyiodide melts. RSC Advances, 9(63), 37079-37081. IF=3.36

17) Utochnikova, V.V., Koshelev, D.S., Medvedko, A.V., Kalyakina, A.S., Bushmarinov, I.S., Grishko, A.Y., Schepers, U., Bräse, S. and Vatsadze, S.Z., (2017). Europium 2-benzofuranoate: Synthesis and use for bioimaging. Optical Materials, 74, pp.191-196. DOI: 10.1016/j.optmat.2017.02.052. DOI: 10.1039/C9RA07613A. IF=3.08

18) Utochnikova, V. V., Grishko, A., Vashchenko, A., Goloveshkin, A., Averin, A., & Kuzmina, N. (2017). Lanthanide Tetrafluoroterephthalates for Luminescent Ink‐Jet Printing. European Journal of Inorganic Chemistry, 2017(48), 5635-5639. DOI: 10.1002/ejic.201700896. IF=2.524

19) Petrov, A.A., Belich, N.A., Grishko, A.Y., Stepanov, N.M., Dorofeev, S.G., Maksimov, E.G., Shevelkov, A.V., Zakeeruddin, S.M., Graetzel, M., Tarasov, A.B. and Goodilin, E.A., (2017). A new formation strategy of hybrid perovskites via room temperature reactive polyiodide melts. Materials Horizons, 4(4), pp.625-632. DOI: 10.1039/C7MH00201G. IF=10.7

20) Utochnikova, V.V., Grishko, A.Y., Koshelev, D.S., Averin, A.A., Lepnev, L.S. and Kuzmina, N.P. (2017). Lanthanide heterometallic terephthalates: Concentration quenching and the principles of the “multiphotonic emission”. Optical Materials, 74, pp.201-208. DOI: 10.1016/j.optmat.2017.02.052. IF=3.08

21) Grishko, A.Y., Utochnikova, V.V., Averin, A.A., Mironov, A.V. and Kuzmina, N.P. (2015). Unusual luminescence properties of heterometallic REE terephthalates. European Journal of Inorganic Chemistry, 2015(10), pp.1660-1664. DOI:10.1002/ejic.201403071. IF=2.524.


International patents:

1) Evgenij Alekseevich Gudilin; Aleksej Borisovich Tarasov; Andrej Andreevich Petrov; Nikolaj Andreevich Belich; Aleksej Yur’evich Grishko; Method for producing a light absorbing film with a perovskite-like structure, 2023-11-28, WIPO, WO2019/132723

2) Sergei Anatolyevich Fateev; Alexey Borisovich Tarasov; Nikolai Andreevich Belich; Aleksey Iurievich Grishko; Natalia Nikolaevna Shlenskaja; Eugene Alekseevich Goodilin; Andrey Andreevich Petrov; Method for producing a semiconducting film of organic-inorganic metal-halide compound with perovskite-like structure, 2024-06-23, WIPO, WO2020/256594

3)Evgeny Alekseevich Gudilin; Evgeny Alekseevich Gudilin; Alexey Borisovich Tarasov; Andrey Andreevich Petrov; Nikolai Andreevich Belich; Aleksei Iurievich Grishko; Methods for producing light-absorbing materials with perovskite structure and liquid polyhalides of variable composition for their implementation, 2022-11-01, WIPO, WO/2018/124938



 



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