Elizaveta S. Shamsutdinova

 

 

 

 

 

 

 

 

 

 

 

PhD, Junior Research Fellow

E-mail: shes1996@bk.ru

Phone: 8-965-887-37-10

Education: Higher education. PhD. Dissertation: “Investigation of the physical properties of liquids and their phase transitions to a solid state using acoustic waves” (2025. Kotelnikov’ IRE of the Russian Academy of Sciences)

Research interests: micro- and nanoparticles, acoustoelectronics, liquid media, targeted drug delivery

Professional experience: 5 years

Work at the institute: Engineer since November 2020, Junior Research Fellow since April 2021

Main scientific publications:

  1. Anisimkin V.I., Voronova N.V., Shamsutdinova E.S., Smirnov A.V., Datsuk E.R., Kashin V.V., Kolesov V.V., Filippova N.V., Kotsyurbenko O.R., Kuznetsova I.E. Determination of acoustic properties of paraffin oil mixed with activated coal nanoparticles or SPAN80 using only BAW time delay measurement // Sensors and Actuators A: Physical (Q1, 0.895). 2024. V. 379. P. 115893. DOI: 10.1016/j.sna.2024.115893.
  2. Smirnov A., Anisimkin V., Shamsutdinova E., Signore M. A., Francioso L., Zykov K., Baklaushev V., Kuznetsova I. Acoustic Waves in Piezoelectric Layered Structure for Selective Detection of Liquid Viscosity // Sensors (Q1, 0.764). 2023. V. 23. N. 17. P. 7329. DOI: 10.3390/s23177329.
  3. Шамсутдинова Е.С., Анисимкин В.И., Фионов А.С., Смирнов А.В., Колесов В.В., Кузнецова И.Е. Совершенствование методов исследования электрофизических и вязкостных свойств жидкостей // Акустический журнал (Q3, 0.291). 2023. Т. 69. №1. С. 56-62. DOI: 10.31857/S0320791922600238. (английская версия: Shamsutdinova E. S., Anisimkin V. I., Fionov A. S., Smirnov A. V., Kolesov V. V., Kuznetsova I. E. Improvement of methods for studying the electrophysical viscous properties of liquids // Acoustical Physics (Q3, 0.291). 2023. V. 69. N. 1. P. 8792. DOI: 10.1134/S1063771022700531).
  4. Anisimkin V., Shamsutdinova E., Li P., Wang B., Zhu F., Qian Zh., Kuznetsova I. Selective Detection of Liquid Viscosity Using Acoustic Plate Waves with In-Plane Polarization // Sensors (Q1, 0.764). 2022. V. 22. N. 7. P. 2727. DOI: 10.3390/s22072727.
  5. Smirnov A., Anisimkin V., Voronova N., Shamsutdinova E., Li P., Ezzin H., Qian Zh., Ma T., Kuznetsova I. Multimode design and piezoelectric substrate anisotropy use to improve performance of acoustic liquid sensors // Sensors (Q1, 0.764). 2022. V. 22. N. 19. P. 7231. DOI: 10.3390/s22197231.
  6. Анисимкин В.И., Кузнецова И.Е., Шамсутдинова Е.С. Особенности детектирования электрических характеристик проводящих жидкостей с помощью нормальных акустических волн // Радиотехника и электроника (Q4, 0.191). 2022. Т. 67. № 8. С. 807-815. DOI: 10.31857/S0033849422080022. (английская версия: Anisimkin V.I., Kuznetsova I.E., Shamsutdinova E.S. Specific Features of Detection of Electric Characteristics of Conductive Liquids Using Normal Acoustic Waves // Journal of Communications Technology and Electronics (Q4, 0.191). 2022. V. 67. N. 8. P. 1022-1029. DOI: 10.1134/S1064226922080022.)
  7. Anisimkin V., Kolesov V., Kuznetsova A., Shamsutdinova E., Kuznetsova I. An Analysis of the Water-to-Ice Phase Transition Using Acoustic Plate Waves // Sensors (Q1, 0.764). 2021. V. 21. N. 3. P. 919. DOI: 10.3390/s21030919.
  8. Gorbachev I. A., Smirnov A. V., Shamsutdinova E. S., Kashin V. V., Yudin S. G., Anisimkin V. I., Kolesov V.V., Kuznetsova I. E. Studying the Structural and Piezoelectric Properties of PVDF Films Obtained Using Langmuir‒Blodgett Technology // Bulletin of the Russian Academy of Sciences: Physics (Q3, 0.253). 2021. Т. 85. №. 6. С. 603-607. DOI: 10.3103/S1062873821060101.
  9. Smirnov A.V., Fionov A.S., Gorbachev I.A., Shamsutdinova E.S., Kuznetsova I.E., Kolesov V.V. Using Additive Technologies to Create Broadband Antennas with Fractal Geometry // Radioelektronika, Nanosistemy, Informacionnye Tehnologii (Q4, 0.171). 2021. Т.13. №4. С. 427434. DOI: 10.17725/rensit.2021.13.427.
  10. И. А. Горбачев, А. В. Смирнов, Е.С. Шамсутдинова, В. В. Кашин, С. Г. Юдин, В. И. Анисимкин, В. В. Колесов, И. Е. Кузнецова Исследование структурных и пьезоэлектрических свойств пленок ПВДФ, полученных методом Ленгмюра-Блоджетт // Известия Российской академии наук. Серия физическая (Q3, 0.253). 2021. Т. 85. № 6. С. 777-782. DOI: 10.31857/S0367676521060107.
  11. Шамсутдинова Е.С., Ломова М.В., Анисимов Р.А. Управление адсорбцией минеральных пористых частиц путем хелатирования // Нелинейный мир. 2021. Т. 19. № 2. С. 57−61. DOI: 10.18127/j20700970-202102-13.

Patents:

  1. RU 2 844 413 C1 NON-CONTACT METHOD FOR DETERMINING THE ELECTROPHYSICAL PROPERTIES OF LIQUID MEDIA

Abstracts of reports:

  1. Шамсутдинова Е.С., Смирнов А.В., Анисимкин В.И., Колесов В.В. Исследование фазовых переходов водных растворов электролитов с помощью акустических волн в пьезоэлектрических пластинах // XXXVII сессия Российского акустического общества : Сборник Трудов XXXVII сессии Российского акустического общества, Москва, 20–24 октября 2025 года. – Москва: ООО «Издательство «ГЕОС», 2025. – 1614 с. – ISBN 978-5-89118-908-9. – EDN IUVYMC. 10.34756/GEOS.2025.17.39305
  2. Е. С. Шамсутдинова, А. В. Смирнов, В. И. Анисимкин, В. В. Колесов Исследование фазового перехода первого рода водных растворов электролитов акустическим методом // СВЧ-техника и телекоммуникационные технологии. – 2025. – № 7. – С. 140-141. – EDN JFPCGD.
  3. И. Е. Кузнецова, В. И. Анисимкин, Е. С. Шамсутдинова Исследование фазового перехода жидкость-твердое тело при помощи акустических датчиков  // Физика конденсированного состояния ФКС-2025 : Сборник тезисов II Научной конференции, посвященной 60-летию Донецкого физико-технического института им. А.А. Галкина, Донецк, 08–10 апреля 2025 года. – Донецк: Донецкий физико-технический институт им. А.А. Галкина, 2025. – С. 42. – EDN UJMYDT.
  4. Шамсутдинова Е.С., Смирнов А.В., Кузнецова И.Е. Бесконтактное влияние электропроводности жидкости на характеристики SH0-волны // Труды XXXVI Сессии РАО, г. Москва, 21-25 октября 2024. -2024. -С. 637, DOI: 10.34756/GEOS.2024.17.38908.
  5. Анисимкин В.И., Кузнецова И.Е., Шамсутдинова Е.С. Особенности измерения электрофизических свойств проводящих жидкостей с помощью акустических волн Лэмба высших порядков // Труды XXXV Сессии РАО, г. Москва, 13-17 февраля 2023 г.  2023.  С. 592, DOI: 10.34756/GEOS.2023.17.38501.
  6. Шамсутдинова Е.С., Анисимкин В.И., Фионов А.С., Колесов В.В., Кузнецова И.Е. Исследование физических свойств жидкостей электроакустическим методом // Труды XXXIV Сессии РАО, г. Москва, 14-18 февраля 2022 г.  2022.  С. 763-770, DOI: 10.34756/GEOS.2021.17.38156

Awards:

  1. Diploma of the Russian Acoustic Society, 1st degree for the best scientific contribution of a young specialist of the XXXIV session of the Russian Academy of Natural Sciences
  2. The second place in the competition of scientific works of young scientists and graduate students of the IRE RAS named after Ivan Anisimkin in 2020

Participation in conferences:

  1. XXXVII session of the Russian Acoustic Society, Moscow, October 20-24, 2025. Report: Shamsutdinova Elizaveta Sergeevna, Smirnov A.V., Anisimkin V.I., Kolesov V.V., INVESTIGATION OF PHASE TRANSITIONS OF AQUEOUS ELECTROLYTE SOLUTIONS USING ACOUSTIC WAVES IN PIEZOELECTRIC PLATES.
  2. The 35th International Conference “Microwave Technology and Telecommunication Technologies”, Sevastopol, September 7-13, 2025. Report: Shamsutdinova E. S., Smirnov A.V., Anisimkin V. I., Kolesov V. V. INVESTIGATION OF THE PHASE TRANSITION OF THE FIRST KIND OF AQUEOUS ELECTROLYTE SOLUTIONS BY ACOUSTIC METHOD
  3. V International Scientific Conference “Technical Acoustics: Developments, Problems, Prospects” (TA-2025), May 19-21, 2025, Tolyatti, Russia. Report: Contactless sensor of electrical conductivity of liquid using acoustic waves in plates
  4.  XXXVI session of the Russian Acoustic Society, October 21-25, 2024, Moscow, Russia, Report: Non–contact influence of electrical conductivity of a liquid on the characteristics of a SH0 wave
  5.  Ninth International Conference on Physical Electronics IPEC-9, October 3-4, 2024, Tashkent, Uzbekistan, Report: Determination of electrical conductivity of liquid by non-contact acoustic method
  6. LXVIII International Scientific Conference “Actual problems of strength”, May 27-31, Vitebsk, Belarus, Report: Acoustic temperature coefficients of suspensions based on petroleum jelly oil
  7. 34th International Crimean Conference “Microwave Technology and Telecommunication Technologies” (KryMiKo 2024), September 8-14, 2024, Sevastopol, Russia, Report: Investigation of phase transitions of aqueous chloride solutions using volumetric acoustic waves
  8. 20th Ivan Anisimkin Youth Competition, April 8-9, 2024, Moscow, Russia Report: Determination of the mechanical properties of suspensions based on petroleum jelly oil with microparticles of activated carbon and sorbitan monoleate over a wide temperature range using a longitudinal volumetric acoustic wave
  9. VIII International Science Festival “Micro- and nanotechnology: research and applications. Science festival for young scholars”, April 25, 2024, Saratov, Russia, Report: Determination of mechanical properties of suspensions based on Vaseline oil with carbon microparticles and sorbitan monooleate in a wide temperature range using a longitudinal bulk acoustic wave
  10. 19th Ivan Anisimkin Youth Competition, April 17-18, 2023., Moscow, Russia, Report: Investigation of the liquid-solid phase transition for aqueous chloride solutions
  11.  33rd International Crimean Conference “Microwave Technology and Telecommunication Technologies” (KryMiKo 2023), September 10-16, 2023, Sevastopol, Russia, Report: Investigation of the liquid—solid phase transition for aqueous chloride solutions
  12.  XXXV session of the Russian Acoustic Society, February 13-17, 2023, Moscow, Russia, Report: Features of measuring the electrophysical properties of conducting liquids using higher–order Lamb acoustic waves
  13.  XVII All-Russian Conference of Young Scientists “Nanoelectronics, Nanophotonics and Nonlinear Physics” (NGNF 2023), September 12-13, 2023, Saratov, Russia, Report: Study of heterogeneity of crystallized water and aqueous solution of nickel chloride in thickness using acoustic method
  14.  XXXIV session of the Russian Acoustic Society, February 14-18, 2022, Moscow, Russia, Report: Study of electrophysical properties of liquids by electroacoustic method
  15. 17th Ivan Anisimkin Youth Competition, April 5-6, 2021, Moscow, Russia, Report: Control of adsorption of mineral porous particles by chelation
  16. XVII All-Russian Conference of Young Scientists “Nanoelectronics, Nanophotonics and Nonlinear Physics” (NGNF 2022), September 13-15, 2022, Saratov, Russia, Report: Using electrophysical and electroacoustic methods to determine the dielectric constant and viscosity of suspensions
  17. The 32nd International Crimean Conference “Microwave Technology and Telecommunication Technologies” (KryMiKo 2022), September 11 – 17, 2022, Sevastopol, Russia, Report: Study of the physical properties of suspensions by electrophysical and acousto–electric methods
  18. VI International Science Festival “Micro- and nanotechnology: research and applications. Science festival for young scholars”, April 28, 2021, Saratov, Russia, Report: A Special Technique for Studying the Electrophysical Properties of Liquid Media, Colloidal Solutions and Suspensions