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Korolev Evgeny V.

Position

Vice-Rector for Research
Head of department
Professor

Academic degree

DSc in Engineering

Academic title

Professor

Address

Office 104, 4, 2nd Krasnoarmeiskaya Str., Saint Petersburg, 190005

Consultation hours:

Tuesday, 16:00 - 17:30

Basic information

Education

SpecialityProduction of construction materials, products and structures Qualification Civil engineer / technologist (Penza State University of Architecture and Construction, 1997)

Professional development

  • Program to improve the level of training of certified / accredited experts of the Federal Service for Supervision in Education and Science “Legal and organizational aspects of the implementation of examinations within the framework of control (supervision) in the field of education and state accreditation of educational activities. Strategies for ensuring the quality of education” (O. E. Kutafin Moscow State Law University, 2016)
  • Expert examination of the quality of vocational education (ANO APE “Training and Consulting Center”, 2017)
  • Training of experts involved in the procedures of state accreditation of educational activities (Academy of Additional Education for Children and Adults of A. N. Kosygin Russian State University (Technology. Design. Art), 2018)
  • Countering corruption in organizations established to fulfill the tasks assigned to federal government bodies (Russian Academy of National Economy and Public Administration under the President of the Russian Federation, 2018)
  • Labour protection for managers and specialists (KVARTA Training Centre, 2020)
  • Modern approach to University transformation management under digital economics conditions ("Sodeistvie" Training centre, 2021)
  • Modern University under digital transformations ("Sodeistvie" Training centre, 2021)
  • Actual issues of practical application of aspects of building materials science in the processes of quality management in construction (SPbGASU, 2021)
  • Digital tools of a modern teacher of higher education (SPbGASU, 2021)
  • Mobilization preparation of an educational institution (St Petersburg Polytechnic University, 2022)

Retraining

  • Professional retraining under the State and Municipal Management Program

Professional interests

  • Educational and methodological support of the educational process in modern social and economic conditions, implementation of new educational standards, digital transformation of higher education and interfacing with the requirements of the professional community

Scientific interests

  • Theoretical foundations of the application of the technology of nanomodification of construction composites; the study of structure formation, structure parameters and properties of construction composites for various purposes
  • Development of methods for designing compositions and predicting the properties of construction composites

Training of doctors and candidates of science

The number of trained candidates of science is 15. The number of trained doctors of science is 3.

Scientific conferences

Various international and all-Russian congresses, scientific and technical conferences.

Professional organizations

Full member of the Russian Engineering Academy.

Number of publications

The list of scientific and educational-methodical works includes: 27 monographs; 362 articles in central peer-reviewed journals; 3 articles in reference books; 112 articles in foreign journals; 21 educational and methodical works, 74 patents for inventions.

The most significant publications

Textbooks

  1. Korolev, E. Introduction to nanotechnology: a course of lectures / E. Korolev, V. Loganina. - Penza: PGUAS, 2009.-- 78 p.

  2. Korolev, E. Physical chemistry in construction materials science / V. Vernigorova, E. Korolev, S. Sadenko. - Penza: PGUAS, 2009.-- 308 p.

  3. Korolev, E. Materials Science. Technology of structural materials: test tasks for laboratory work / E. Korolev, S. Kislitsyna, S. Novokreshchenova.- Penza: PGUAS, 2011. - 88 p.

  4. Korolev, E. Organization and carrying out of scientific research work of students of technical specialties / E. Korolev, V. Loganina, V. Demyanova, R. Tarasov. - Penza: PGUAS, 2012.-- 170 p.

  5. Korolev, E. Models of exemplary basic educational programs at the levels of higher education: Bachelor’s, Master’s, and Specialist’s degree  / A.  Alexandrov,  A. Rudskoy, P. Chubik, A. Borovkov, S. Korshunov, P. Romanov, E. Belov, L. Egorova, E. Korolev [expert al]. - St. Petersburg: Polytechnic University Publishing House., 2016.-- 96 p.

  6. Korolev, E. Methodology of scientific research / E. Korolev, A. Inozemtsev, A. Grishina, S. Inozemtsev, V. Smirnov. Moscow: MISI-MGSU Publishing house, 2019.

  7. Chemistry [Electronic resource]: textbook for bachelor's students in all fields of study and all modes of education / A. N. Grishina, E. V. Korolev; Ministry of Science and Higher Education of the Russian Federation, National Research Moscow State University of Civil Engineering, Department of Building Materials and Materials Science. – Electronic data and program (2.5 MB). – Moscow: MISI-MGSU Publishing House, 2019.

  8. Road Concrete Technology. Part 1 / E. V. Korolev, S. S. Inozemtsev, S. Yu. Shekhovtsova, N. I. Shestakov, A. S. Inozemtsev. – Moscow: MISI-MGSU Publishing House, 2020.

Monographs

  1. Korolev, E. Glass-ceramic materials for protection from radiation / E. Korolev, S. Egorov, N. Proshina. - Penza: PGUAS Publishing House, 2009.-- 108 p.

  2. Korolev, E. Radiation protective and chemically resistant sulfur-based construction materials / M. Bazhenov, A. Albakasov,  V. Korolev. - Penza, Orenburg: IPK OSU, 2010.-- 364 p.

  3. Korolev, E. Radiation-protective composites of the variatropic carcass structure based on hot melts / E. Korolev, A. Samoshin, O. Koroleva, V. Smirnov. - Penza: PGUAS, 2010. - 242 p.

  4. Korolev, E. Effective heat-insulating foam-ceramic concretes. / V. A. Beregovoy, E. V. Korolev, Yu. M. Bazhenov. - Moscow: MGSU, 2011.-- 264 p.

  5. Korolev, E. System analysis in construction materials science / Yu. M. Bazhenov, I.A. Garkina, A.M. Danilov, Ye. V. Korolev. - Moscow: MGSU, 2012.-- 432 p.

  6. Korolev, E. Structure formation and structural strength of cement composites / N.I. Makridin, E. V. Korolev, I.N. Maksimova. - Moscow: MGSU Publishing House, 2013.-- 152 p.

  7. Korolev, E. Liquid-glass building materials for special purposes / A. N. Grishina, E. V. Korolev. - Moscow: MSCEU Publishing House, 2015.-- 224 p.

  8. Inozemtsev, A. S. High-strength lightweight concrete / A. S. Inozemtsev, E. V. Korolev. - St Petersburg: SPbGASU, 2022. - 192 p.

Articles

  1. Aspects of Electrolyte Coagulation of Saponite-Containing Suspension of Recycled Water from Mining and Processing Enterprises / M. A. Malygina, A. M. Aizenshtadt, E. V. Korolev, T. A. Drozdyuk, M. A. Frolova // Ecology and Industry of Russia. - 2022. - Vol. 26, No. 11. - Pp. 27-33.
  2. Phase Composition of Cement Stone Obtained by Binder Activation in a Vortex Electromagnetic Layer / R. A. Ibragimov, E. V. Korolev, A. A. Shinkarev, T. R. Deberdeev // Silicate Engineering and Technology. - 2022. - Vol. 29, No. 3. Pp. 284-294.
  3. Inozemtcev A. Conditions for the selection of superabsorbent polymer hydrogel for cement compositions / Inozemtcev A., Duong T.Q., Korolev E. // Journal of Sol-Gel Science and Technology. 2023. Vol. 108. No. 2. Pp. 256–262.
  4. Ibragimov, R. A. The influence of magnetic field on the granulometric composition of portland cement during its grinding / R. A. Ibragimov, E. V. Korolev // News of higher educational institutions. Construction. - 2023. - No. 3 (771). - Pp. 38–51.
  5. Ibragimov, R. A. Phase composition of hydration products of portland cement mechanically activated in a vortex layer apparatus with additives of various nature / R. A. Ibragimov, E. V. Korolev // Academia. Architecture and Construction. – 2023. – No. 4. – P. 138–144.
  6. Obukhova, S. Yu. Features of structure formation of a modified binder in the presence of rubber crumb. Part 1. Compatibility of rubber crumb with hydrocarbon plasticizers / S. Yu. Obukhova, A. O. Budkina, E. V. Korolev // Regional architecture and construction. - 2024. - No. 1 (58). - P. 24-32.
  7. Ibragimov, R. A. Mechanisms of destruction of mineral particles and kinetic characteristics of ferromagnetic bodies in vortex layer devices / R. A. Ibragimov, E. V. Korolev, Sh. Kh. Zaripov // Housing construction. - 2025. - No. 1-2. - P. 81-90.
  8. Frolova, M. A. Energy model of surface activation of mineral components of building composite materials / M. A. Frolova, E. V. Korolev // Construction materials. – 2025. – № 1–2. – P. 72–78.
  9. Self-healing in Construction Materials Science: Basic Terms and Implementation Methods / S. S. Inozemtsev, E. V. Korolev, A. S. Inozemtsev, H. T. Le, E. V. Matyushin // Construction Materials. – 2025. – № 3. – P. 58–65.
  10. Crystal-chemical characteristics of saponite and serpentine: a possible criterion for the direction of the modification process / M. A. Frolova, E. V. Korolev, A. M. Aizenshtadt, G. A. Garamov // Construction Materials. – 2025. – № 5. – P. 52–59.
  11. Grishina, A. N. Radiation-protective barium-containing building mortars / A. N. Grishina, E. V. Korolev // Cement and its application. - 2025. - No. 1. - Pp. 62-67.
  12. Ibragimov, R. A. Model for determining the amount of activated substance during mechanomagnetic activation / R. A. Ibragimov, E. V. Korolev // Bulletin of the Kazan State University of Architecture and Civil Engineering. - 2025. - No. 1 (71). - Pp. 67-76.
  13. Assessment of structural effects from the formation of a film phase of a matrix material / E. V. Korolev, A. N. Grishina, A. M. Danilov, A. M. Aizenshtadt // Regional architecture and construction. - 2025. - No. 1 (62). - Pp. 21-34.
  14. Ibragimov, R. A. Assessment of energy costs for the activation of mineral components in a vortex layer apparatus / R. A. Ibragimov, E. V. Korolev // Regional architecture and construction. - 2025. - No. 1 (62). - P. 5-20.
  15. Danilov V. E., Aizenstadt A. M., Korolev E. V., Shamanina A. V., Garamov G. A. Methodological aspects of determining the surface tension of mineral powder systems using compacts // Inorganic Materials: Applied Research. 2025. V. 16. No. 3. P. 784–798.
  16. Systems Analysis of the Evolution of Knowledge on the Structure Formation of Building Materials / E. V. Korolev, A. N. Grishina, A. M. Danilov, A. M. Aizenshtadt // Industrial and Civil Engineering. - 2024. - No. 9. - Pp. 18-27.
  17. Structural Strength Equation of Composite Materials / E. V. Korolev, A. N. Grishina, A. M. Danilov, A. M. Aizenshtadt // Regional Architecture and Construction. - 2025. - No. 3 (64). - Pp. 5-19.
  18. Kovalchuk V., Tsigelnyuk E., Korolev E. Cement paste stratification at critical cementing point // Magazine of Civil Engineering. – 2026. – V. 19. – No. 1 (141). – P. 14 104.
  19. Inozemtsev, S. S. Structural features of asphalt concrete using capsules for self-healing / S. S. Inozemtsev, E. V. Korolev // Bulletin of MGSU. - 2026. - Vol. 21, No. 2. - P. 233-245.
  20. Yajun Lv, Zhiruo Feng, Meijun Lu, Evgeniy Korolev, Leigao Zuo, Heng Yang, Yao Lu, Kangjie Zhang, Weizhun Jin Dissolution resistance of cement pastes hydrophobically modified with calcium stearate and isobutyltriethoxysilane // https://doi.org/10.1016/j.conbuildmat.2026.147980
  21. Jia Li, Kangjie Zhang , Jingwei Zhang, Yajun Lv, Evgeniy Korolev, Linyang Jin, Weizhun Jin Hydrophobic metakaolin-modified sulfoaluminate cement: Physicochemical properties and accelerated steel corrosion behaviour // https://doi.org/10.1016/j.cscm.2026.e06309
  22. Fuda Chen, Jun Lai, Svetlana Obukhova, Evgeniy Korolev, Zengyao Lin, Vitaliy Gladkikh, Jingtao Wu, Jiangmiao Yu A study on the effects of surface-activated warm-mix additives on the rheological properties and compaction characteristics of ultra-high-viscosity asphalt // https://doi.org/10.1016/j.dibe.2026.101025
  23. Sergei Inozemtcev, Denis Jelagin, Evgeniy Korolev, Tuan Huu Le, Hassan Fadil, Manfred N. Partl, Feng Chen Self-healing of asphalt concrete under cyclic loading: Experimental and numerical study // https://doi.org/10.1007/s11709-026-1292-x

Patents

  1. Patent No. 2704084 dated October 23, 2019. Method for Activating Lime / Ibragimov R. A., Khuziakhmetov R. Kh., Deberdeev T. R., Korolev E. V.
  2. Patent No. 2667179 dated September 17, 2018. Method for Preparing Concrete Mix / Deberdeev T. R., Ibragimov R. A., Deberdeev R. Ya., Leksin V. V., Korolev E. V.
  3. Patent No. 2548303 dated March 19, 2015. High-Strength Lightweight Fiber-Reinforced Concrete / Inozemtsev A. S., Korolev E. V.
  4. Patent No. 257169 dated February 20, 2014. Complex nanosized additive for foam concrete mixture / Grishina A. N., Korolev E. V.
  5. Patent No. 2488563 dated July 27, 2013. Nanomodified polymer composite / Smirnov V. A., Korolev E. V.
  6. Patent No. 2495844 dated October 20, 2013. Nanomodified composite on a thermoplastic matrix / Smirnov V. A., Korolev E. V.
  7. Patent No. 2478592 dated April 10, 2013. Method for producing sulfur-bitumen compositions with reduced hydrogen sulfide and sulfur dioxide emissions / Grishina A. N., Korolev E. V.
  8. Patent No. 2471180 dated December 27, 2012<span>. </span>Acoustic emission testing method for composite materials / Smirnov V. A., Korolev E. V.
  9. Patent No. 2718443 dated 06.04.2020 / Nanomodified high-strength lightweight concrete / Inozemtsev A. S., Korolev E. V.
  10. Patent No. 2761220 C1, 06.12.2021 / Modifiers for polymer-bitumen binder based on II vacuum distillate and residual selectively purified extract / Shekhovtsova S. Yu., Korolev E. V.
  11. Patent No. 2766987 C1, 16.03.2022 / Technological line for the production of concrete mix / Ibragimov R. A., Korolev E. V.
  12. Patent No. 2773899 C1, June 14, 2022 / Lightweight Construction Composite / A. S. Inozemtsev, E. V. Korolev
  13. Patent No. 2794089 C1, April 11, 2023 / Carbon Nanomaterial Carrier Medium for Modifying Bitumen Binders / S. Yu. Obukhova, E. V. Korolev
  14. R. A. Ibragimov, E. V. Korolev, Yu. V. Bikaeva. Glass Dolomite Sheet Manufacturing Line // Patent for Invention RU 2845247 C1, August 15, 2025. Application No. 2024139245 dated May 30, 2025.

Achievements

Awards

  • Laureate of the 2018 Russian Federation Government Prize in Education
  • Honored Builder of Russia
  • Honored Worker in Education of the Russian Federation
  • Certificate of Honor of the Ministry of Education and Science of the Russian Federation
  • Breastplate "For Contribution to the Development of the Nuclear Industry," 2nd Class
  • Medal "Laureate of the All-Russian Exhibition Center"
  • Departmental Honorary Badge "For Merit in Specialized Construction"
  • Prize of the I.A. Grishmanov Russian Engineering Academy
  • Certificate of Gratitude from the Mayor of Moscow (Order dated December 12, 2018)
  • Certificate of Gratitude from the Administration of the Admiralty District of St Petersburg (2022)
  • Certificate of Honor of the Presidium of the Higher Attestation Commission (2022)
  • Jubilee Medal "50 Years of the Start of Construction of the Baikal-Amur Mainline" (2024)

Additional information

Expert at the Republican Research Scientific Advisory Center of Expertis (RINKCE Research Institute).

Expert at the Guild of Experts in Professional Education.

Expert at the Russian Academy of Sciences.

Expert at the Higher Attestation Commission of the Russian Federation.