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列·阿·特鲁索夫教授

Trusov Lev

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主要研究方向 职位 教授


列·阿·特鲁索夫

Trusov Lev







Trusov Lev

姓名Name:Trusov Lev

出生Birth:1984年6月

学位Degree:PhD

职称Academic Title:教授

电话Phone:18820281267

办公Office:Main Building, Room 462

邮箱Email:

trusov.lev@smbu.edu.cn


■ 个人简介/Biography-Short  Description



Dr. Trusov Lev is a professor at Shenzhen MSU-BIT University. He received his Bachelor’s degree in Materials Science and his Master’s degree in Chemistry from Lomonosov Moscow State University, where he later continued his graduate studies toward a PhD in Solid State Chemistry. After that, he remained at the University to continue his research work and to teach courses in Chemistry and Materials Science. Currently, his main research area involves the design and study of advanced magnetic materials, such as magnetic dielectrics, ferrite nanomaterials, nanocomposites, and magnetic fluids. He has served as the principal investigator on projects supported by the Russian Science Foundation and the National Natural Science Foundation of China. He has published more than 80 papers in Materials Today, Materials Horizons, Nano Research and other high‑impact journals. He has supervised over 30 Bachelor’s and Master’s theses and three PhD dissertations.








■ 教育经历/Education



□ 2001.09-2005.06 Lomonosov Moscow State University, Materials Science, BS;

□ 2005.09-2007.01 Lomonosov Moscow State University, Chemistry, MS;

□ 2007.04-2010.04 Lomonosov Moscow State University, Solid State Chemistry, PhD.




■ 工作经历/Work  Experience



□ 2010.09-2016.01 Lomonosov MSU, Faculty of Chemistry, Research Associate;

□ 2016.01-2019.03 Lomonosov MSU, Faculty of Materials Science, Associate Professor;

□ 2018.09-2023.08 Shenzhen MSU-BIT University, Faculty of Materials Science, Associate Professor;

□ 2023.09-至今 Shenzhen MSU-BIT University, Faculty of Materials Science, Professor.



■ 研究领域/  Research topics




□ Ceramics, glasses and glass-ceramics;

□ Ferrite materials with giant coercivity and sub-terahertz FMR frequencies;

□ Ferrofluids based on hard magnetic hexaferrite nanoparticles and their specific properties;

□ Magnetic nanomaterials, nanostructures and nanocomposites.




■ 主讲课程/Teaching  experience





1. Inorganic Chemistry (seminars and practical course), undergraduate stage, 144 h

2. Inorganic Chemistry (lectures), undergraduate stage, 90 h

3. Fundamentals of X-ray diffraction (practical course), undergraduate stage, 90 h

Fundamentals of X-ray diffraction (lectures), undergraduate stage, 24 h






■ 社会兼职/ Social activity




None / 暂无




■ 荣誉奖励/Rewards




□ 2023 Lomonosov MSU Program of Development Prize

□ 2022 Lomonosov MSU Program of Development Prize

□ 2021 Lomonosov MSU Program of Development Prize

□ 2021 Distinguished Academics in Longgang District of Shenzhen 龙岗区特聘岗位

□ 2020 Lomonosov MSU Program of Development Prize

□ 2020 Lomonosov MSU Award for talented students, postgraduates and young scientists

□ 2014 Lomonosov Moscow State University Young scientists award

□ 2012 Lomonosov Moscow State University Young scientists award

□ 2012 Lomonosov MSU Award for talented students, postgraduates and young scientists

□ 2010 Lomonosov Moscow State University Young scientists award

□ 2008 Lomonosov Moscow State University Young scientists award

□ 2007 DAAD Leonhard Euler Grant





■ 科研工作/Scientific projects




□ 2026年01月至 2027年 12月,Advanced anisotropic ceramics

of strontium hexaferrite, highly substituted by aluminum, chromium, and

manganese,National Natural Science Foundation of China, 80万元,主持。

□ 2020年07月至 2023年 06月,Hard-magnetic nanoparticles of highly substituted strontium hexaferrite for new generations of magnetic recording and wireless technologies,Russian Science Foundation 20-73-10129, 140万元, 主持。



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





papers:

1. Evgeny A. Gorbachev; Lev A. Trusov; Anastasia E. Sleptsova; Ekaterina S. Kozlyakova; Ludmila N. Alyabyeva; Samvel R. Yegiyan; Anatoly S. Prokhorov; Vasiliy A. Lebedev; Ilya V. Roslyakov; Alexander V. Vasiliev; Pavel E. Kazin; Hexaferrite materials displaying ultra-high coercivity and sub-terahertz ferromagnetic resonance frequencies, Materials Today, 2020, 32: 13-18

2. Evgeny A. Gorbachev; Ekaterina S. Kozlyakova; Lev A. Trusov; Anastasia E. Sleptsova; Mikhail A. Zykin; Pavel E. Kazin; Design of modern magnetic materials with giant coercivity, Russian Chemical Reviews, 2021, 90(10): 1287-1329

3. Evgeny A. Gorbachev; Lev A. Trusov; Liudmila N. Alyabyeva; Ilya V. Roslyakov; Vasily A. Lebedev; Ekaterina S. Kozlyakova; Oxana V. Magdysyuk; Alexey V. Sobolev; Iana S. Glazkova; Sergey A. Beloshapkin; Boris P. Gorshunov; Pavel E. Kazin; High-coercivity hexaferrite ceramics featuring sub-terahertz ferromagnetic resonance, Materials Horizons, 2022, 9(4): 1264-1272

4. Evgeny A. Gorbachev; Miroslav V. Soshnikov; Liudmila N. Alyabyeva; Ekaterina S. Kozlyakova; Anastasia S. Fortuna; Asmaa Ahmed; Roman D. Svetogorov; Lev A. Trusov; Sub-terahertz/terahertz electron resonances in hard ferrimagnets, Materials Today, 2023, 63: 99-103

5. Evgeny A. Gorbachev; Liudmila N. Alyabyeva; Artem V. Pronin; Alexandra S. Sultanovskaya; Ekaterina S. Kozlyakova; Oxana V. Magdysyuk; Ilya V. Roslyakov; Martin Dressel; Boris P. Gorshunov; Lev A. Trusov; Tunable sub-terahertz resonance absorption in highcoercivity magnetodielectric ceramics, Materials Horizons, 2024, 11(16): 3844-3855

6. Evgeny A. Gorbachev; Wang Yifan; Duan Jingtong; Roy R. Nygaard; Ekaterina S. Kozlyakova; Lev A. Trusov; Thermogravimetry in a Gradient Magnetic Field as an Efficient Quasi In Situ Method for Studying Magnetic Phase Formation: Optimizing ε-Fe2O3 Synthesis, Materials Horizons, 2025, 12(21): 9185–9197


Patents:

1. Eberle F.; Vizgalov V.; Trusov L.; Itkis D.; Improved LAGP glass ceramics, 2015-09-16, European patent, EP2918559A1

2. Eberle F.; Itkis D.; Trusov L.; Vizgalov V.; LAGP Glass Ceramics, 2016-10-04, US patent, US9461332B2

3. Kazin P.E.; Trusov L.A.; Napolskii K.S.; Lukatskaya M.R.; Eliseev A.A.; Method for producing anisotropic nanostructures via filtration of colloidal solutions through porous membranes with single-size channels, 2011-07-20, Russian patent, RU2424043C1

4. Kazin P.E.; Zaytsev D.D.; Trusov L.A.; Method of producing high-coercivity materials based on strontium hexaferrite, 2009-11-20, Russian patent, RU2373593C2



■其他






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