Научные руководители
Виноградов Владимир Валентиновичдоктор химических наук vvvinogradov@itmo.ru Структурное подразделение: химико-биологический кластер Должность: ведущий научный сотрудник Структурное подразделение: химико-биологический кластер Должность: директор Структурное подразделение: химико-биологический кластер Должность: заведующий лабораторией Структурное подразделение: химико-биологический кластер Должность: профессор (квалификационная категория "ведущий профессор") Профиль: 02.00.04 - Физическая химия 03.01.04 - Биохимия 02.00.01 - Неорганическая химия 1.4.5. - Хемоинформатика 1.4.1. - Неорганическая химия 1.4.4. - Физическая химия 1.5.4. - Биохимия Область интересов: Молекулярная неинвазивная хирургия, растворная химия, биоматериаловедение, нанотехнологии, нанофармацевтика, таргетная терапия, золь-гель синтез, нанотоксикология, дизайн наноструктур, органо-неорганические гибриды. Использование алгоритмов для анализа информации о физико-химических свойствах соединений и материалов с использованием искусственных нейронных сетей, использование методов машинного обучения для прогнозирования физико-химических свойств химических соединений, разработка и создание баз данных для обобщения информации о физико-химических свойствах соединений и материалов. Рабочий язык: Английский, Русский |
Публикации руководителя
Выходные данные | Год | Индексирование в БД |
Kladko D.V., Vinogradov V.V. Magnetosurgery: Principles, design, and applications//Smart Materials in Medicine, 2024, Vol. 5, No. 1, pp. 24-35 | 2024 | Scopus, Белый список |
Dubrovsky I., Dmitrenko A., Dmitrenko A., Serov N., Vinogradov V. Unveiling the Potential of AI for Nanomaterial Morphology Prediction//Proceedings of Machine Learning Research, 2024, Vol. 235, pp. 11957-11978 | 2024 | Scopus, Web of Science |
Razlivina J., Dmitrenko A., Vinogradov V. AI-Powered Knowledge Base Enables Transparent Prediction of Nanozyme Multiple Catalytic Activity//Journal of Physical Chemistry Letters, 2024, Vol. 15, No. 22, pp. 5804–5813 | 2024 | Scopus, Web of Science, Белый список |
Leonchuk S.S., Falchevskaya A.S., Morozova P., Gromov N.V., Vinogradov V.V. NaK alloy as a versatile reagent for template-free synthesis of porous metal- and metalloid-based nanostructures//Chemical Communications, 2024, Vol. 60, No. 36, pp. 4814-4817 | 2024 | Scopus, Web of Science, Белый список |
Jyakhwo S., Serov N., Dmitrenko A., Vinogradov V.V. Machine Learning Reinforced Genetic Algorithm for Massive Targeted Discovery of Selectively Cytotoxic Inorganic Nanoparticles//Small, 2024, Vol. 20, No. 6, pp. 2305375 | 2024 | Scopus, Web of Science, Белый список |
Gao S., Yang Y., Falchevskaya A., Vinogradov V.V., Yuan B., Liu J., Sun X. Phase Transition Liquid Metal Enabled Emerging Biomedical Technologies and Applications//Advanced Science, 2024, Vol. 11, No. 37, pp. 2306692 | 2024 | Scopus, Web of Science, Белый список |
Odegova V., Lavrinenko A., Rakhmanov T., Sysuev G., Dmitrenko A., Vinogradov V. DESignSolvents: An Open Platform for the Search and Prediction of the Physicochemical Properties of Deep Eutectic Solvents//Green Chemistry, 2024, Vol. 26, No. 7, pp. 3958-3967 | 2024 | Scopus, Web of Science, Белый список |
Sharova E.A., Falchevskaya A., Leonchuk S.S., Redkov A.V., Nikolaev V., Vinogradov V.V. Liquid metal-mediated fabrication of metalloid nanoarchitectures//Chemical Communications, 2023, Vol. 59, No. 73, pp. 10928-10931 | 2023 | Scopus, Web of Science, Белый список |
Shirokii N., Din Y., Petrov I., Seregin Y., Sirotenko S., Razlivina J., Serov N., Vinogradov V. Quantitative prediction of inorganic nanomaterial cellular toxicity via machine learning//Small, 2023, Vol. 19, No. 19, pp. 2207106 | 2023 | Scopus, Web of Science, Белый список |
Baburova P.I., Kladko D.V., Lokteva A., Pozhitkova A., Rumyantceva V., Rumyantceva V., Pankov I.V., Taskaev S., Vinogradov V.V. Magnetic Soft Robot for Minimally Invasive Urethral Catheter Biofilm Eradication//ACS Nano, 2023, Vol. 17, No. 21, pp. 20925-20938 | 2023 | Scopus, Web of Science, Белый список |
Serov N., Kim P., Falchevskaya A., Shabalkin I., Dmitrenko A., Kladko D., Vinogradov V. Quantifying the Efficacy of Magnetic Nanoparticles for MRI and Hyperthermia Applications via Machine Learning Methods//Small, 2023, Vol. 19, No. 48, pp. 2303522 | 2023 | Scopus, Web of Science, Белый список |
Razlivina J., Serov N., Shapovalova O., Vinogradov V. DiZyme: Open-Access Expandable Resource for Quantitative Prediction of Nanozyme Catalytic Activity//Small, 2022, Vol. 18, No. 12, pp. 2105673 | 2022 | Scopus, Web of Science |
Fakhardo A.F., Anastasova E.I., Makarov V., Ikonnikova E., Kulko E., Agadzhanian N., Yakunina M., Shkodenko L., Tsvetikova S., Toropko M., Koshel E., Zakharov M., Alexandrov G., Khuttunen O., Kulikov P., Burmistrov O., Vinogradov V., Prilepskii A. Heparin-coated iron oxide nanoparticles: application as a liver contrast agent, toxicity and pharmacokinetics//Journal of Materials Chemistry B, 2022, Vol. 10, No. 38, pp. 7797-7807 | 2022 | Scopus, Web of Science |
Serov N.S., Vinogradov V.V. Artificial intelligence to bring nanomedicine to life//Advanced Drug Delivery Reviews, 2022, Vol. 184, pp. 114194 | 2022 | Scopus, Web of Science |
Serov N., Vinogradov V. Inverse material search and synthesis verification by hand drawings via transfer learning and contour detection//Small Methods, 2022, Vol. 6, No. 5, pp. 2101619 | 2022 | Scopus, Web of Science |
Pozhitkova A.V., Kladko D.V., Vinnik D.A., Taskaev S.V., Vinogradov V.V. Reprogrammable soft swimmers for minimally invasive thrombus extraction//ACS Applied Materials and Interfaces, 2022, Vol. 14, No. 20, pp. 23896-23908 | 2022 | Scopus, Web of Science |
Leonchuk S.S., Falchevskaya A.S., Nikolaev V., Vinogradov V.V. NaK Alloy: Underrated Liquid Metal//Journal of Materials Chemistry A, 2022, Vol. 10, No. 43, pp. 22955–22976 | 2022 | Scopus, Web of Science |
Protasiuk L.E., Serov N.S., Lokteva A.V., Kladko D.V., Koshel E.I., Vinogradov V.V. Mechano-bactericidal anisotropic particles for oral biofilm treatment//Journal of Materials Chemistry B, 2022, Vol. 10, No. 25, pp. 4867-4877 | 2022 | Scopus, Web of Science |
Anastasova E.I., Belyaeva A.A., Tsymbal S.A., Vinnik D.A., Vinogradov V.V. Hierarchical Porous Magnetite Structures: From Nanoparticle Assembly to Monolithic Aerogels//Journal of Colloid and Interface Science, 2022, Vol. 615, pp. 206-214 | 2022 | Scopus, Web of Science |
Falchevskaya A., Kulachenkov N.K., Bachinin S.V., Milichko V.A., Vinogradov V.V. Single Particle Color Switching by Laser-Induced Deformation of Liquid Metal-derived Microcapsules//Journal of Physical Chemistry Letters, 2021, Vol. 12, No. 32, pp. 7738–7744 | 2021 | Scopus, Web of Science |
Chrishtop V.V., Mironov V., Prilepskii A.Y., Nikonorova V.G., Vinogradov V.V. Organ-specific toxicity of magnetic iron oxide-based nanoparticles//Nanotoxicology, 2021, Vol. 15, No. 2, pp. 167-204 | 2021 | Scopus, Web of Science |
Falchevskaya A., Prilepskii A.Y., Tsvetikova S.A., Koshel E.I., Vinogradov V.V. Facile Synthesis of a Library of Hollow Metallic Particles through the Galvanic Replacement of Liquid Gallium//Chemistry of Materials, 2021, Vol. 33, No. 5, pp. 1571-1580 | 2021 | Scopus, Web of Science |
Zakharzhevskii M., Anastasova E., Kladko D.V., Prilepskii A.Y., Gorshkova M.N., Vinnik D.A., Taskaev S.V., Vinogradov V.V. Shape Anisotropic Magnetic Thrombolytic Actuators: Synthesis and Systematic Behavior Study//Journal of Materials Chemistry B, 2021, Vol. 9, No. 24, pp. 4941-4955 | 2021 | Scopus, Web of Science |
Дуданов И.П., Виноградов В.В., Криштоп В.В., Никонорова В.Г. Фармакокинетика перспективного ксерогеля на основе нейтрального гидрозоля диоксида титана для терапии ожоговых ран // Современные проблемы науки и образования -2021. - № 2. - С. 164 | 2021 | ВАК, РИНЦ |
Дуданов И.П., Виноградов В.В., Криштоп В.В., Никонорова В.Г. Сравнительная характеристика ранозаживляющего эффекта ксерогеля на основе нейтрального гидрозоля диоксида титана для терапии ожоговых ран // Исследования и практика в медицине -2021. - Т. 8. - № 1. - С. 30-39 | 2021 | RSCI, ВАК, РИНЦ |
Rumyantceva V., Rumyantceva V., Andreeva Y., Tsvetikova S., Radaev A., Vishnevskaya M., Vinogradov V., Drozdov A.S., Koshel E. Magnetically controlled carbonate nanocomposite with ciprofloxacin for biofilm eradication//International Journal of Molecular Sciences, 2021, Vol. 22, No. 12, pp. 6187 | 2021 | Scopus, Web of Science |
Predeina A.L., Prilepskii A.Y., De Zea Bermudez V., Vinogradov V.V. Bioinspired in Vitro Brain Vasculature Model for Nanomedicine Testing Based on Decellularized Spinach Leaves//Nano Letters, 2021, Vol. 21, No. 23, pp. 9853-9861 | 2021 | Scopus, Web of Science |
Zavyalova A.G., Kladko D.V., Chernyshov I.Y., Vinogradov V.V. Large MOFs: synthesis strategies and applications where size matters//Journal of Materials Chemistry A, 2021, Vol. 9, No. 45, pp. 25258-25271 | 2021 | Scopus, Web of Science |
Румянцева В.И., Виноградов В.В. Подход в повышении эффективности производственного процесса с использованием объемных композитных структур // Современные проблемы биохимии, генетики и биотехнологии: материалы III Всероссийской научной конференции с международным участием (Уфа, 21-23сентября 2021г.) -2021. - С. 169-173 | 2021 | РИНЦ |
Shapovalova O.E., Drozdov A.S., Bryushkova E.A., Morozov M.I., Vinogradov V.V. Room-temperature fabrication of magnetite-boehmite sol-gel composites for heavy metal ions removal//Arabian Journal of Chemistry, 2020, Vol. 13, No. 1, pp. 1933-1944 | 2020 | Scopus, Web of Science |
Zakharzhevskii M., Drozdov A.S., Kolchanov D.S., Shkodenko L., Vinogradov V.V. Test-System for Bacteria Sensing Based on Peroxidase-Like Activity of Inkjet-Printed Magnetite Nanoparticles//Nanomaterials, 2020, Vol. 10, No. 2, pp. 313 | 2020 | Scopus, Web of Science |
Mosina K.S., Nazarova Е.А., Vinogradov A.V., Vinogradov V.V., Krivoshapkina E.F., Krivoshapkin P.V. Alumina Nanoparticles for Firefighting and Fire Prevention//ACS Applied Nano Materials, 2020, Vol. 3, No. 5, pp. 4386-4393 | 2020 | Scopus, Web of Science |
Andreeva Y.I., Drozdov A.S., Solovyova A.S., Fakhardo A.F., Vinogradov V.V. Polyelectrolyte-based magnetic photonic crystals with anticoagulant activity//Materials Today Chemistry, 2020, Vol. 17, pp. 100292 | 2020 | Scopus, Web of Science |
Drozdov A.S., Prilepskii A.Y., Koltsova E.M., Anastasova E.I., Vinogradov V.V. Magnetic polyelectrolyte-based composites with dual anticoagulant and thrombolytic properties: towards optimal composition//Journal of Sol-Gel Science and Technology, 2020, Vol. 95, No. 3, pp. 771-782 | 2020 | Scopus, Web of Science |
Serov N.S., Darmoroz D., Lokteva A., Chernyshov I., Koshel E., Vinogradov V.V. One-pot synthesis of template-free hollow anisotropic CaCO 3 structures: towards inorganic shape-mimicking drug delivery systems//Chemical Communications, 2020, Vol. 56, No. 80, pp. 11969-11972 | 2020 | Scopus, Web of Science |
Vasilichin V.A., Tsymbal S.A., Fakhardo A.F., Anastasova E., Marchenko A.S., Shtil A., Vinogradov V.V., Koshel E. Effects of Metal Oxide Nanoparticles on Toll-Like Receptor mRNAs in Human Monocytes//Nanomaterials, 2020, Vol. 10, No. 1, pp. 127 | 2020 | Scopus, Web of Science |
Predeina A.L., Dukhinova M.S., Vinogradov V.V. Bioreactivity of decellularized animal, plant, and fungal scaffolds: perspectives for medical applications//Journal of Materials Chemistry B, 2020, Vol. 8, No. 44, pp. 10010-10022 | 2020 | Scopus, Web of Science |
Kladko D.V., Zakharzhevskii M., Vinogradov V.V. Magnetic Field-Mediated Control of Whole-Cell Biocatalysis//Journal of Physical Chemistry Letters, 2020, Vol. 11, No. 21, pp. 8989-8996 | 2020 | Scopus, Web of Science |
Prilepskii A.Y., Serov N.S., Kladko D.V., Vinogradov V.V. Nanoparticle-Based Approaches towards the Treatment of Atherosclerosis//Pharmaceutics, 2020, Vol. 12, No. 11, pp. 1056 | 2020 | Scopus, Web of Science |
Vinogradov V.V., Avnir D., Kessler V.G., Kozlova D.K. Preface//Journal of Sol-Gel Science and Technology, 2020, Vol. 95, No. 3, pp. 493 | 2020 | Scopus, Web of Science |
Prilepskii A.Y., Kalnin A.Y., Fakhardo A.F., Anastasova E.I., Nedorezova D.D., Antonov G.A., Vinogradov V.V. Cationic magnetite nanoparticles for increasing siRNA hybridization rates//Nanomaterials, 2020, Vol. 10, No. 6, pp. 1018 | 2020 | Scopus, Web of Science |
Kiselev G.O., Kiseleva A.P., Ilatovskii D.A., Koshevaya E.D., Nazarovskaia D.A., Gets D.S., Vinogradov V.V., Krivoshapkin P.V., Krivoshapkina E.F. Upconversion metal (Zr, Hf, and Ta) oxide aerogels//Chemical Communications, 2019, Vol. 55, No. 56, pp. 8174-8177 | 2019 | Scopus, Web of Science |
Solovev Y.V., Prilepskii A.Y., Krivoshapkina E.F., Fakhardo A.F., Bryushkova E.A., Kalikina P.A., Koshel E.I., Vinogradov V.V. Sol-gel derived boehmite nanostructures is a versatile nanoplatform for biomedical applications//Scientific Reports, 2019, Vol. 9, pp. 1176 | 2019 | Scopus, Web of Science |
Frosiniuk A., Kolchanov D.S., Milichko V.A., Vinogradov A.V., Vinogradov V.V. Optical interference-based sensors for the visual detection of nano-scale objects//Nanoscale, 2019, Vol. 11, No. 13, pp. 6343-6351 | 2019 | Scopus, Web of Science |
Rumyantceva V., Rumyantceva V., Koshel E., Vinogradov V. Biocide-conjugated magnetite nanoparticles as an advanced platform for biofilm treatment//Therapeutic Delivery, 2019, Vol. 10, No. 4, pp. 241-250 | 2019 | Scopus, Web of Science |
Prilepskii A.Y., Schekina A., Vinogradov V.V. Magnetically controlled protein nanocontainers as a drug depot for the hemostatic agent//Nanotechnology, Science and Applications, 2019, Vol. 12, pp. 11-23 | 2019 | Scopus, Web of Science |
Nuzhina J., Shtil A.A., Prilepskii A.Y., Vinogradov V.V. Preclinical Evaluation and Clinical Translation of Magnetite-Based Nanomedicines//Journal of Drug Delivery Science and Technology, 2019, Vol. 54, pp. 1773-2247 | 2019 | Scopus, Web of Science |
Serov N., Prilepskii A.Y., Sokolov A., Vinogradov V.V. Synthesis of Plasmin-Loaded Fe3O4@CaCO3 Nanoparticles: Towards Next-Generation Thrombolytic Drugs//ChemNanoMat, 2019, Vol. 5, No. 10, pp. 1267-1271 | 2019 | Scopus, Web of Science |
Yushkova E.D., Nazarova Е.А., Matyuhina A.V., Noskova A.O., Shavronskaya D.O., Vinogradov V.V., Skvortsova N.N., Krivoshapkina E.F. Application of Immobilized Enzymes in Food Industry//Journal of Agricultural and Food Chemistry, 2019, Vol. 67, No. 42, pp. 11553-11567 | 2019 | Scopus, Web of Science |
Dukhinova M.S., Prilepskii A.Y., Shtil A.A., Vinogradov V.V. Metal Oxide Nanoparticles in Therapeutic Regulation of Macrophage Functions//Nanomaterials, 2019, Vol. 9, No. 11, pp. 1631 | 2019 | Scopus, Web of Science |
Drozdov A.S., Fakhardo A.F., Vinogradov V.V. Sol-gel composites based on alumina and ferria for cardiovascular diseases treatment//Biocompatible Hybrid Oxide Nanoparticles for Human Health, 2019, pp. 149-179 | 2019 | Scopus |
Fakhardo A.F., Anastasova E.I., Gabdullina S.R., Solovyeva A.S., Saparova V.B., Chrishtop V.V., Koshevaya E.D., Krivoshapkina E.F., Krivoshapkin P.V., Kiselev G.O., Kalikina P.A., Koshel E.I., Shtil A.A., Vinogradov V.V. Toxicity Patterns of Clinically Relevant Metal Oxide Nanoparticles//ACS Applied Bio Materials, 2019, Vol. 2, No. 10, pp. 4427-4435 | 2019 | Scopus, Web of Science |
Shabanova E.M., Drozdov A.S., Fakhardo A.F., Dudanov I.P., Kovalchuk M.S., Vinogradov V.V. Thrombin@Fe3O4 nanoparticles for use as a hemostatic agent in internal bleeding//Scientific Reports, 2018, Vol. 8, pp. 233 | 2018 | Scopus, Web of Science |
Ilatovskii D.A., Tyutkov N.A., Vinogradov V.V., Vinogradov A.V. Stimuli-Responsive Mechanoluminescence in Different Matrices//ACS Omega, 2018, Vol. 3, No. 12, pp. 18803-18810 | 2018 | Scopus, Web of Science |
Prilepskii A.Y., Fakhardo A.F., Drozdov A.S., Vinogradov V.V., Dudanov I.P., Shtil A.A., Bel'Tyukov P., Shibeko A., Koltsova E., Nechipurenko D., Vinogradov V.V. Urokinase-conjugated magnetite nanoparticles as a promising drug delivery system for targeted thrombolysis: synthesis and preclinical evaluation//ACS Applied Materials and Interfaces, 2018, Vol. 10, No. 43, pp. 36764-36775 | 2018 | Scopus, Web of Science |
Andreeva Y.I., Drozdov A.S., Vinogradov V.V. Enzymatic nanocomposites with radio-frequency field modulated activity//ACS Biomaterials Science and Engineering, 2018, Vol. 4, No. 12, pp. 3962-3967 | 2018 | Scopus, Web of Science |
Koshel E., Kassirov I.S., Rumiantceva V.I., Rumyantceva V.I., Ulasevich S.A., Andreeva I.I., Skorb E.V., Vinogradov V.V. Development of functional nanostructures effective against bacteria biofilms including multidrug resistant bacteria//Инфекция и иммунитет = Infektsiya i immunitet [Russian Journal of infection and immunity], 2018, Vol. 8, No. 4(спецвыпуск), pp. 605 | 2018 | RSCI, ВАК, РИНЦ |
Rumyantceva V.I., Andreeva Y.I., Drozdov A.S., Vinogradov V.V., Koshel E.I. Development of magnetically controlled antibacterial complex effective against biofilms//Инфекция и иммунитет = Infektsiya i immunitet [Russian Journal of infection and immunity], 2018, Vol. 8, No. 4(спецвыпуск), pp. 616 | 2018 | RSCI, ВАК, РИНЦ |
Морозов В.Н., Белоусов А.В., Крусанов Г.А., Колыванова М.А., Кривошапкин П.В., Виноградов В.В., Черняев А.П., Штиль А.А. Наноразмерные оксиды тантала, гафния и церия для монохроматических пучков фотонов и брахитерапии // Оптика и спектроскопия -2018. - Т. 125. - № 1. - С. 101-104 | 2018 | ВАК, РИНЦ |
Milichko V.A., Zuev D.A., Baranov D.G., Zograf G.P., Volodina K.V., Krasilin A.A., Mukhin I.S., Dmitriev P.A., Vinogradov V.V., Makarov S.V., Belov P.A. Metal-dielectric nanocavity for real-time tracing molecular events with temperature feedback//Laser and Photonics Reviews, 2018, Vol. 12, No. 1, pp. 1700227 | 2018 | Scopus, Web of Science |
Morozov V.N., Belousov A.V., Krusanov G.A., Kolyvanova M.A., Krivoshapkin P.V., Vinogradov V.V., Chernyaev A.P., Shtil A.A. Nanosized Particles of Tantalum, Hafnium, and Cerium Oxides Used with Monochromatic Photon Beams and Brachytherapy Sources//Optics and spectroscopy, 2018, Vol. 125, No. 1, pp. 104-106 | 2018 | Scopus, Web of Science |
Ilatovskii D.A., Milichko V.A., Vinogradov A.V., Vinogradov V.V. Holographic sol-gel monoliths: Optical properties and application for humidity sensing//Royal Society Open Science, 2018, Vol. 5, No. 5, pp. 172465 | 2018 | Scopus, Web of Science |
Anastasova E.I., Prilepskii A.Y., Fakhardo A.F., Drozdov A.S., Vinogradov V.V. Magnetite Nanocontainers: Toward Injectable Highly Magnetic Materials for Targeted Drug Delivery//ACS Applied Materials and Interfaces, 2018, Vol. 10, No. 36, pp. 30040–30044 | 2018 | Scopus, Web of Science |
Vinogradov V.V., Drozdov A.S., Mingabudinova L.R., Shabanova E.M., Kolchina N.V., Anastasova E.I., Markova A.A., Shtil A.A., Milichko V.A., Starova G.L., Precker R., Vinogradov A.V., Hey-Hawkins E., Pidko E.A. Composites Based on Heparin and MIL-101(Fe): The Drug Releasing Depot for Anticoagulant Therapy and Advanced Medical Nanofabrication//Journal of Materials Chemistry B, 2018, Vol. 6, No. 16, pp. 2450-2459 | 2018 | Scopus, Web of Science |
Seisenbaeva G.A., Fromell K., Vinogradov V.V., Terekhov A.N., Pakhomov A.V., Nilsson B., Ekdahl K., Vinogradov V.V., Kessler V.G. Correction: Dispersion of TiO2 nanoparticles improves burn wound healing and tissue regeneration through specific interaction with blood serum proteins (vol 7, 15448, 2017)//Scientific Reports, 2018, Vol. 8, pp. 4416 | 2018 | Scopus, Web of Science |
Astafyeva B., Shapovalova O.E., Drozdov A.S., Vinogradov V.V. alfa-Amylase@Ferria: Magnetic Nanocomposites with Enhanced Thermal Stability for Starch Hydrolysis//Journal of Agricultural and Food Chemistry, 2018, Vol. 66, No. 30, pp. 8054-8060 | 2018 | Scopus, Web of Science |
Seisenbaeva G., Fromell K., Vinogradov V.V., Terekhov A., Pakhomov A., Nilsson B., Ekdahl K., Vinogradov V.V., Kessler V.G. Dispersion of TiO2 nanoparticles improves burn wound healing and tissue regeneration through specific interaction with blood serum proteins//Scientific Reports, 2017, Vol. 7, pp. 15448 | 2017 | Scopus, Web of Science |
Milichko V.A., Zuev D.A., Baranova D.G., Zograf G.P., Volodina K.V., Krasilin A.A., Vinogradov V.V., Makarov S.V. Metal-dielectric nanocavity as a versatile optical sensing platform//11th International Congress on Engineered Material Platforms for Novel Wave Phenomena, METAMATERIALS 2017, 2017, pp. 403-405 | 2017 | Scopus, Web of Science |
Furasova A.D., Fakhardo A.F., Milichko V.A., Tervoort E., Niederberger M., Vinogradov V.V. Synthesis of a rare-earth doped hafnia hydrosol: Towards injectable luminescent nanocolloids//Colloids and Surfaces B: Biointerfaces, 2017, Vol. 154, pp. 21-26 | 2017 | Scopus, Web of Science |
Safaryan S.M., Yakovlev A.V., Pidko E.A., Vinogradov A.V., Vinogradov V.V. Reversible sol-gel-sol medium for enzymatic optical biosensors//Journal of Materials Chemistry B, 2017, Vol. 5, No. 1, pp. 85-91 | 2017 | Scopus, Web of Science |
Andreeva Y.I., Drozdov A.S., Fakhardo A.F., Cheplagin N.A., Shtil A.A., Vinogradov V.V. The controllable destabilization route for synthesis of low cytotoxic magnetic nanospheres with photonic response//Scientific Reports, 2017, Vol. 7, pp. 11343 | 2017 | Scopus, Web of Science |
Furasova A.D., Ivanovski V., Yakovlev A.V., Milichko V.A., Vinogradov V.V., Vinogradov A.V. Inkjet fabrication of highly efficient luminescent Eu-doped ZrO2 nanostructures//Nanoscale, 2017, Vol. 9, No. 35, pp. 13069-13078 | 2017 | Scopus, Web of Science |
Safaryan S.M., Yakovlev A.V., Vinogradov A.V., Vinogradov V.V. Inkjet printing of the chromogen free oxidase based optical biosensors//Sensors and Actuators B: Chemical, 2017, Vol. 251, pp. 746-752 | 2017 | Scopus, Web of Science |
Volodina K.V., Avnir D., Vinogradov V.V. Alumina nanoparticle-assisted enzyme refolding: A versatile methodology for proteins renaturation//Scientific Reports, 2017, Vol. 7, pp. 1458 | 2017 | Scopus, Web of Science |
Zuev D.A., Baranov D., Zograf G.P., Makarov S.V., Volodina K.V., Krasilin A.A., Mukhin I.S., Dmitriev P.A., Vinogradov V.V., Milichko V.A., Pidko E.A. Multifunctional Sensing with Hybrid Nanophotonic Structures//2017 Progress In Electromagnetics Research Symposium - Spring (PIERS), 2017, pp. 1491-1493 | 2017 | Scopus, Web of Science |
Drozodov A.S., Vinogradov V.V. Magnetic thrombolytic ceramic nanoparticles//Materials Today: Proceedings, 2017, Vol. 4, No. 7, pp. 6856-6862 | 2017 | Scopus, Web of Science |
Anastasova E.I., Ivanovski V., Fakhardo A.F., Lepeshkin A.I., Omar S., Drozdov A.S., Vinogradov V.V. A pure magnetite hydrogel: synthesis, properties and possible applications//Soft Matter, 2017, Vol. 13, No. 45, pp. 8651-8660 | 2017 | Scopus, Web of Science |
Shabanova E.M., Drozdov A.S., Ivanovski V., Suvorova I.I., Vinogradov V.V. Collagenase@magnetite: Proteolytic composite for magnetically targeted minimally invasive surgery//RSC Advances, 2016, Vol. 6, No. 87, pp. 84354-84362 | 2016 | Scopus, Web of Science |
Илатовский Д.А., Виноградов В.В. Получение голографических неорганических монолитов методом мягкой литографии // Инновационно-технологическое сотрудничество в области химии для развития Северо-Западного региона России (INNO-TECH 2016): тезисы докладов региональной конференции - научной школы молодых ученых для научно-исследовательских институтов и высших учебных заведений (Санкт-Петербург, 5-7октября 2016г.) -2016. - С. 54 | 2016 | РИНЦ |
Mingabudinova L.R., Vinogradov V.V., Milichko V.A., Hey-Hawkins E., Vinogradov A.V. Metal-organic frameworks as competitive materials for non-linear optics//Chemical Society Reviews, 2016, Vol. 45, No. 19, pp. 5408-5431 | 2016 | Scopus, Web of Science |
Chapurina Y.E., Drozdov A.S., Popov I., Vinogradov V.V., Dudanov I.P., Vinogradov V.V. Streptokinase@alumina nanoparticles as a promising thrombolytic colloid with prolonged action//Journal of Materials Chemistry B, 2016, Vol. 4, No. 35, pp. 5921-5928 | 2016 | Scopus, Web of Science |
Drozdov A.S., Vinogradov V.V., Dudanov I.P., Vinogradov V.V. Leach-proof magnetic thrombolytic nanoparticles and coatings of enhanced activity//Scientific Reports, 2016, Vol. 6, pp. 28119 | 2016 | Scopus, Web of Science |
Shapovalova O.E., Levy D., Avnir D., Vinogradov V.V. Protection of enzymes from photodegradation by entrapment within alumina//Colloids and Surfaces B: Biointerfaces, 2016, Vol. 146, pp. 731-736 | 2016 | Scopus, Web of Science |
Agafonov A.V., Afanasyev D.A., Gerasimova T.V., Krayev A.S., Kashirin M.A., Vinogradov V.V., Vinogradov A.V., Kessler V.G. Nanoparticle Self-Assembly Mechanisms in the Colloidal Synthesis of Iron Titanate Nanocomposite Photocatalysts for Environmental Applications//ACS Sustainable Chemistry and Engineering, 2016, Vol. 4, No. 5, pp. 2814-2821 | 2016 | Scopus, Web of Science |
Drozdov A.S., Shapovalova O.E., Ivanovski V., Avnir D., Vinogradov V.V. Entrapment of Enzymes within Sol-Gel-Derived Magnetite//Chemistry of Materials, 2016, Vol. 28, No. 7, pp. 2248-2253 | 2016 | Scopus, Web of Science |
Drozdov A.S., Ivanovski V., Avnir D., Vinogradov V.V. A universal magnetic ferrofluid: Nanomagnetite stable hydrosol with no added dispersants and at neutral pH//Journal of Colloid and Interface Science, 2016, Vol. 468, pp. 307–312 | 2016 | Scopus, Web of Science |
Yakovlev A.V., Milichko V.A., Vinogradov V.V., Vinogradov A.V. Inkjet Color Printing by Interference Nanostructures//ACS Nano, 2016, Vol. 10, No. 3, pp. 3078–3086 | 2016 | Scopus, Web of Science |
Vinogradov A.V., Kuprin D., Abduragimov I., Kuprin G., Serebriyakov E., Vinogradov V.V. Silica foams for fire prevention and firefighting//ACS Applied Materials and Interfaces, 2016, Vol. 8, No. 1, pp. 294-301 | 2016 | Scopus, Web of Science |
Yakovlev A.V., Milichko V.A., Pidko E.A., Vinogradov V.V., Vinogradov A.V. Inkjet printing of TiO2/AlOOH heterostructures for the formation of interference color images with high optical visibility//Scientific Reports, 2016, Vol. 6, pp. 37090 | 2016 | Scopus, Web of Science |
Vinogradov V.V., Avnir D. Enzyme renaturation to higher activity driven by the sol-gel transition: Carbonic anhydrase//Scientific Reports, 2015, Vol. 5, pp. 14411 | 2015 | Scopus, Web of Science |
Vinogradov A.V., Zaake-Hertling H., Drozdov A.S., Lonnecke P., Seisenbaeva G., Kessler V.G., Vinogradov V.V., Hey-Hawkins E. Anomalous adsorption of biomolecules on a Zn-based metal-organic framework obtained via a facile room-temperature route//Chemical Communications, 2015, Vol. 51, No. 100, pp. 17764-17767 | 2015 | Scopus, Web of Science |
Vinogradov A.V., Levshanov A.A., Kashirin M.A., Agafonov A.V., Vinogradov V.V. Magneto-optical modulation on colloid Cu-Ni nanocomposite//Journal of Physical Chemistry C, 2015, Vol. 119, No. 3, pp. 1500-1505 | 2015 | Scopus, Web of Science |
Hentchel F., Vinogradov V.V., Vinogradov A.V., Агафонов А.В., Guliants V., Persson I., Seisenbaeva G.A., Kessler V.G. Zirconium(IV) and Hafnium(IV) coordination polymers with a Tetra-acetyl-ethane (Bisacac) ligand: synthesis, structure elucidation and gas sorption behavior//Polyhedron, 2015, Vol. 89, pp. 297-303 | 2015 | Scopus, Web of Science |
Vinogradov V.V., Vinogradov A., Sobolev V.E., Dudanov I.P., Vinogradov V.V. Plasminogen activator entrapped within injectable alumina: a novel approach to thrombolysis treatment//Journal of Sol-Gel Science and Technology, 2015, Vol. 73, No. 2, pp. 501-505 | 2015 | Scopus, Web of Science |
Vinogradov V.V., Avnir D. Exceptional thermal stability of industrially-important enzymes by entrapment within nano-boehmite derived alumina//RSC Advances, 2015, Vol. 5, No. 15, pp. 10862-10868 | 2015 | Scopus, Web of Science |
Chapurina Y., Vinogradov V.V., Vinogradov A.V., Sobolev V.E., Dudanov I.P., Vinogradov V.V. Synthesis of Thrombolytic Sol-Gel Coatings: Toward Drug-Entrapped Vascular Grafts//Journal of Medicinal Chemistry, 2015, Vol. 58, No. 15, pp. 6313-6317 | 2015 | Scopus, Web of Science |
Vinogradov V.V., Felner I., Nowik I., Avnir D. Conductive magnetic sol-gel films//Journal of Materials Chemistry C, 2015, Vol. 3, No. 41, pp. 10723-10727 | 2015 | Scopus, Web of Science |
Drozdov A.S., Volodina K.V., Vinogradov V.V., Vinogradov V.V. Biocomposites for wound-healing based on sol-gel magnetite//RSC Advances, 2015, Vol. 5, No. 101, pp. 82992-82997 | 2015 | Scopus, Web of Science |
Yakovlev A.V., Milichko V., Vinogradov V.V., Vinogradov A.V. Sol-gel assisted inkjet hologram patterning//Advanced Functional Materials, 2015, Vol. 25, No. 47, pp. 7375-7380 | 2015 | Scopus, Web of Science |
Vinogradov A.V., Ermakova A.V., Butman M.F., Hey-Hawkins E., Vinogradov V.V. A facile sol-gel synthesis of impurity-free nanocrystalline titania//Physical Chemistry Chemical Physics, 2014, Vol. 16, No. 22, pp. 10614-10619 | 2014 | Scopus, Web of Science |
Vinogradov A.V., Vinogradov V.V. Low-temperature sol–gel synthesis of crystalline materials//RSC Advances, 2014, Vol. 4, No. 86, pp. 45903-45919 | 2014 | Scopus, Web of Science |
Vinogradov V.V., Agafonov A.V., Avnir D. Conductive sol-gel films//Journal of Materials Chemistry C, 2014, Vol. 2, No. 20, pp. 3914-3920 | 2014 | Scopus, Web of Science |
Volodina K.V., Solov'Eva N.L., Vinogradov V.V., Sobolev V.E., Vinogradov A., Vinogradov V.V. A synergistic biocomposite for wound healing and decreasing scar size based on sol–gel alumina//RSC Advances, 2014, Vol. 4, No. 105, pp. accepred | 2014 | Scopus, Web of Science |
Vinogradov A., Zaake-Hertling H., Hey-Hawkins E., Agafonov A.V., Seisenbaeva G.A., Kessler V.G., Vinogradov V.V. The first depleted heterojunction TiO2-MOF-based solar cell//Chemical Communications, 2014, Vol. 50, No. 71, pp. 10210-10213 | 2014 | Scopus, Web of Science |
Vinogradov V.V., Komova Y.M., Vinogradov A., Vinogradov V. Preparation and physicochemical properties of Nicotinamide@AlOOH biocompatible composite based on sol-gel materials//Nanotechnologies in Russia, 2014, Vol. 9, No. 1-2, pp. 87-92 | 2014 | Scopus |
Vinogradov V.V., Avnir D. Exceptional thermal stability of therapeutical enzymes entrapped in alumina sol-gel matrices//Journal of Materials Chemistry B, 2014, Vol. 2, No. 19, pp. 2868-2873 | 2014 | Scopus, Web of Science |