2019 Candidate degree in physical and mathematical science
Education
2022 Повышение квалификации: Самарский университет, Решение профессиональных задач с использованием систем искуственного интеллекта
2022 Повышение квалификации: Самарский университет, Современные механизмы привлечения ресурсов для научной деятельности
2022 Повышение квалификации: Самарский университет, Навыки оказания первой помощи
2021 Повышение квалификации: Самарский университет, Электронная информационно-образовательная среда университета
2018 Повышение квалификации: Самарский университет, Электронная информационно-образовательная среда университета
2018 Повышение квалификации: Самарский университет, Навыки оказания первой помощи
2018 Повышение квалификации: Самарский университет, Инклюзивное профессиональное образование
2018 Профессиональная переподготовка: Самарский национальный исследовательский университет имени академика С.П.Королева, По программе "Электроника и наноэлектроника"
2014 - 2018 Аспирантура: Самарский национальный исследовательский университет имени академика С.П.Королева
2009 - 2014 Высшее: Самарский государственный университет
2022 Повышение квалификации: Самарский университет, Инклюзивное профессиональное образование
2023
1Shishkina D.A., Zhuravleva M.A., Poluektova N.A. etc. Porous-silicon-based nanocontainers for intranasal administration of drugs // Technical Physics Letters 2023. — Vol. 49. № 12. — P. 26-27
2Postavnoy N.Yu., Shishkin I.A., Shishkina D.A.Development of a Device for Measuring Temperature Dependence of Current in a Porous Silicon Solar Cell // 10th International School and Conference on Optoelectronics, Photonics, Engineering and Nanostructures. — 2023. — P. 115-116
3Lebedev D.M., Nefedov S.A., Shishkina D.A. etc. Growth Features of 3C-SiC/Si Films Fabricated by HTCVD // Optical Memory and Neural Networks (Information Optics) 2023. — Vol. 32. — P. S102-S108
2022
1Singh J., Sharma P., Tripathi N. etc. Synthesis of highly sensitive nanomaterial for ultra-fast photocatalytic activity: A detailed study on photocatalytic capabilities of rod-shaped TiS3 nanostructures // Catalysis Communications 2022. — Vol. 162.
2Tishin P.D., Shishkina D.A., Shishkin I.A. etc. Исследование деградации характеристик фоточувствительных структур с пористым кремнием // St. Petersburg State Polytechnical University Journal: Physics and Mathematics 2022. — Vol. 15. № 3.3. — P. 82-85
3Shishkina D.A., Shishkin I.A., Tishin P.D. Investigation of the degradation of the characteristics of photosensitive structures with porous silicon // 9 th International School and Conference on Optoelectronics, Photonics, Engineering and Nanostructures “Saint Petersburg OPEN 2022”. — 2022. — P. 211-212
4Latukhina N.V., Nesterov D.A., Poluektova N.A. etc. Effect of Rare Earth Coatings on Photoelectric Characteristics of Porous Silicon Structures // Optoelectronics, Instrumentation and Data Processing 2022. — Vol. 58. Issue 6. № 6. — P. 626-632
2021
1Shishkin I. A. , Lizunkova D.A., Latukhina N. V. The process of pore formation on a textured silicon substrate during electrochemical etching: 3D model // Journal of Physics: Conference Series. — 2021. — Vol. 1745. Issue 1.
2S. , Tripathi N., Sharma P. etc. Development of transition metal dichalcogenides for modern photodetector devices // Proceedings of ITNT 2021 - 7th IEEE International Conference on Information Technology and Nanotechnology. — 2021. —
3Shishkin I. A. , Shishkina D., Latukhina N. V. Multilayer structures with the rare earth metal fluoride films based on porous silicon // Proceedings of ITNT 2021 - 7th IEEE International Conference on Information Technology and Nanotechnology. — 2021. —
4Shishkina D.A., Poluektova Natalya Alekseevna, Shishkin I.A. Photovoltaic characteristics of structures with porous silicon obtained by various technological plans // 8th International School and Conference “Saint Petersburg OPEN 2021”. — 2021. — P. 209-210
5Latukhina N.V., Pavelev V.S., Chepurnov V.I. etc. Problems and prospects of micro- and nanocrystalline silicon // IХ International Scientific Conference "Actual Problems of Solid State Physics". — 2021. — Vol. 2. — P. 132-135
6Shishkin I. A. , Shishkina D.A., Latukhina N. V. Simulation optical parameters nanowire structures of various shapes. // Journal of Physics: Conference Series. — 2021. — Vol. 2086. Issue 1.
7Shishkina D.A., Shishkin I.A., Tishin P.D. Simulating the spectral characteristics of reflection in planar porous structures with antireflection coatings ZnS/DyF3 // 8 th International School and Conference on Optoelectronics, Photonics, Engineering and Nanostructures “Saint Petersburg OPEN 2021”. — 2021. — P. 366-367
8Shishkin I. A. , Shishkina D.Simulation of light transit through silicon nanowires structure // Proceedings of ITNT 2021 - 7th IEEE International Conference on Information Technology and Nanotechnology. — 2021. —
10Shishkina D., Bezmelnitsin D., Pronin P. The main parameters of the formation of whisker nanocrystals // Proceedings of ITNT 2021 - 7th IEEE International Conference on Information Technology and Nanotechnology. — 2021. —
11Shishkina D., Shishkin I. A. , Tishin P. D. Simulating the spectral characteristics of reflection in planar porous structures with antireflection coatings ZnS/DyF3 // Journal of Physics: Conference Series. — 2021. — Vol. 2086. Issue 1.
12Shishkina D.A., Poluektova N.A., Shishkin I. A. Photovoltaic characteristics of structures with porous silicon obtained by various technological plans // Journal of Physics: Conference Series. — 2021. — Vol. 2086. Issue 1.
2020
1Pukhova V., Kolesnikovich V., Spivak Y. etc. Particularities of Scanning Electron Microscopy Operation Parameters for Textured Porous Silicon Diagnostics // Proceedings of the 2020 IEEE Conference of Russian Young Researchers in Electrical and Electronic Engineering, EIConRus 2020. — 2020. — P. 994-999
2Lizunkova D.A., Shishkin I. A. , Latukhina N. V. Optical and photoelectric characteristics of the ZnS / por-Si / Si structure performed by different technological routes // Journal of Physics: Conference Series. — 2020. — Vol. 1695. Issue 1.
3Shishkin I.A., Lizunkova D.A., Latukhina N.V. Optical and photoelectric characteristics of the ZnS / por-Si / Si structure performed by different technological routes // 7th International School and Conference on Optoelectronics, Photonics, Engineering and Nanostructures "Saint-Petersburg OPEN 2020". — 2020. — P. 21-22
4Latukhina N. V. , Lizunkova D.A., Rogozhina G.A. etc. Multilayer structure based porous silicon for solar cells // AIP Conference Proceedings. — 2020. — Vol. 2276.
2019
1Shishkin I.A., Lizunkova D.A., Latukhina N.V. Simulation of current-voltage and power-voltage characteristics of «space» porous silicon solar cells // 6th International School and Conference on Optoelectronics, Photonics, Engineering and Nanostructures. — 2019. — P. 299-300
2Shishkin I. A. , Lizunkova D.A., Latukhina N. V. Simulation of current-voltage characteristics and power-voltage characteristics of "space" solar cells based porous silicon in the Comsol Multiphysics package // Journal of Physics: Conference Series. — 2019. — Vol. 1410. Issue 1.
2018
1Latukhina N. V. , Lizunkova D., Paranin V. D. etc. The influence of technological parameters on the optical properties of photosensitive structures based on porous silicon // Journal of Physics: Conference Series. — 2018. — Vol. 1096. Issue 1.
2017
1Kirsanov N.Y., Latukhina N. V. , Lizunkova D.A. etc. Multilayer photosensitive structures based on porous silicon and rare-earth-element compounds: Study of spectral characteristics // Semiconductors 2017. — Vol. 51. Issue 3. — P. 353-356
2Lizunkova D., Latukhina N. V. , Chepurnov V. etc. Nanocrystalline silicon and silicon carbide optical properties // CEUR Workshop Proceedings. — 2017. — Vol. 1900. — P. 84-89
2015
1Latukhina N. V. , Rogozin A., Puzyrnaya G. etc. Efficient Silicon Solar Cells for Space and Ground-Based Aircraft // Procedia Engineering. — 2015. — Vol. 104. — P. 157-161
Научные интересы
Пористый кремний, фотоэлектрические преобразователи солнечной энергии, просветляющие покрытия для ФЭП, свойства структур на основе пористого кремния, применения пористого кремния, кремниевые нанонити.