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<response><item key="0"><nothing>Ivan Reznik, Arina Cherednikova, Sabina Bikmetova, D. V. Danilov, Mikhail Zyuzin, "Microfluidic synthesis of AgInS2 quantum dots with different stoichiometry for biomedicine", 2026 International Conference Laser Optics (ICLO), pp. 418-418, 2026, [DOI: 10.1109/ICLO69056.2026.11624559] </nothing></item><item key="1"><nothing>Sabina Bikmetova, Ivan Reznik, Daria Sennikova, Pavel Kustov, Artur Karamyants, Lilia  Dvoretskaya, Lidia Mikhailova, Konstantin Arabuli, Kirill Lepik, Mikhail Zyuzin, Dmitry Zuev, "Continuous Separation of Laser-Ablated Silicon Nanoparticles Using a Spiral Inertial Microfluidic Device: A Route to Monodisperse Mie-Resonant Colloids for Nanophotonics", ACS Applied Nano Materials, 2026, [DOI: 10.1021/acsanm.6c00888] [IF: 5.64, SJR: 1.12]</nothing></item><item key="2"><nothing>Ivan Reznik, Arina Cherednikova, Denis V. Danilov, Alexandra Koroleva, Evgeniy V. Zhizhin, Sergey  Cherevkov, Mikhail Zyuzin, "Stoichiometry-dependent ROS generation efficiency in ternary quantum dots", Photonics and Nanostructures - Fundamentals and Applications, vol. 70, pp. 101523, 2026, [DOI: 10.1016/j.photonics.2026.101523] [IF: 3.01, SJR: 0.55]</nothing></item><item key="3"><nothing>Valentina I. Gorbacheva, Ivan Reznik, &#x415;.&#x41F;. &#x41A;&#x43E;&#x43B;&#x435;&#x441;&#x43E;&#x432;&#x430;, "Potential of an AgInS2 quantum dot/albumin nanoparticle system for photodynamic therapy", Journal of Optical Technology, vol. 92, pp. 340, 2026, [DOI: 10.1364/jot.92.000340] [IF: 0.42, SJR: 0.22]</nothing></item><item key="4"><nothing>&#x412;&#x438;&#x43A;&#x442;&#x43E;&#x440;&#x438;&#x44F; &#x412;&#x435;&#x441;&#x435;&#x43B;&#x43E;&#x432;&#x430;, &#x41A;&#x43E;&#x43D;&#x441;&#x442;&#x430;&#x43D;&#x442;&#x438;&#x43D; &#x410;&#x440;&#x430;&#x431;&#x443;&#x43B;&#x438;, &#x41F;&#x430;&#x432;&#x435;&#x43B; &#x424;&#x438;&#x43B;&#x430;&#x442;&#x43E;&#x432;, &#x418;&#x432;&#x430;&#x43D; &#x420;&#x435;&#x437;&#x43D;&#x438;&#x43A;, &#x41C;&#x438;&#x445;&#x430;&#x438;&#x43B; &#x417;&#x44E;&#x437;&#x438;&#x43D;, "&#x41E;&#x43F;&#x442;&#x438;&#x43C;&#x438;&#x437;&#x430;&#x446;&#x438;&#x44F; &#x443;&#x441;&#x43B;&#x43E;&#x432;&#x438;&#x439; &#x444;&#x443;&#x43D;&#x43A;&#x446;&#x438;&#x43E;&#x43D;&#x430;&#x43B;&#x438;&#x437;&#x430;&#x446;&#x438;&#x438; &#x441;&#x442;&#x435;&#x43A;&#x43B;&#x430; &#x444;&#x43B;&#x443;&#x43E;&#x440;&#x435;&#x441;&#x446;&#x435;&#x43D;&#x442;&#x43D;&#x43E;-&#x43C;&#x435;&#x447;&#x435;&#x43D;&#x43D;&#x44B;&#x43C;&#x438; &#x43E;&#x43B;&#x438;&#x433;&#x43E;&#x43D;&#x443;&#x43A;&#x43B;&#x435;&#x43E;&#x442;&#x438;&#x434;&#x430;&#x43C;&#x438; &#x434;&#x43B;&#x44F; &#x441;&#x43E;&#x437;&#x434;&#x430;&#x43D;&#x438;&#x44F; &#x432;&#x43E;&#x441;&#x43F;&#x440;&#x43E;&#x438;&#x437;&#x432;&#x43E;&#x434;&#x438;&#x43C;&#x44B;&#x445; &#x414;&#x41D;&#x41A;-&#x43D;&#x430;&#x43D;&#x43E;&#x441;&#x435;&#x43D;&#x441;&#x43E;&#x440;&#x43D;&#x44B;&#x445; &#x438; &#x444;&#x43E;&#x442;&#x43E;&#x43D;&#x43D;&#x44B;&#x445; &#x443;&#x441;&#x442;&#x440;&#x43E;&#x439;&#x441;&#x442;&#x432;", &#x41E;&#x43F;&#x442;&#x438;&#x43A;&#x430; &#x438; &#x441;&#x43F;&#x435;&#x43A;&#x442;&#x440;&#x43E;&#x441;&#x43A;&#x43E;&#x43F;&#x438;&#x44F;, vol. 133, pp. 1219-1226, 2025, [DOI: 10.61011/OS.2025.11.62172.8712-25] [IF: 0.25, ]</nothing></item><item key="5"><nothing>&#x412;.&#x418;. &#x413;&#x43E;&#x440;&#x431;&#x430;&#x447;&#x435;&#x432;&#x430;, &#x418;&#x432;&#x430;&#x43D; &#x420;&#x435;&#x437;&#x43D;&#x438;&#x43A;, &#x415;.&#x41F;. &#x41A;&#x43E;&#x43B;&#x435;&#x441;&#x43E;&#x432;&#x430;, "&#x424;&#x43E;&#x442;&#x43E;&#x438;&#x43D;&#x434;&#x443;&#x446;&#x438;&#x440;&#x43E;&#x432;&#x430;&#x43D;&#x43D;&#x43E;&#x435; &#x438;&#x437;&#x43C;&#x435;&#x43D;&#x435;&#x43D;&#x438;&#x435; &#x444;&#x43B;&#x443;&#x43E;&#x440;&#x435;&#x441;&#x446;&#x435;&#x43D;&#x442;&#x43D;&#x44B;&#x445; &#x441;&#x432;&#x43E;&#x439;&#x441;&#x442;&#x432; AgInS2 &#x43A;&#x432;&#x430;&#x43D;&#x442;&#x43E;&#x432;&#x44B;&#x445; &#x442;&#x43E;&#x447;&#x435;&#x43A;: &#x432;&#x43B;&#x438;&#x44F;&#x43D;&#x438;&#x435; &#x431;&#x435;&#x43B;&#x43A;&#x43E;&#x432;&#x43E;&#x433;&#x43E; &#x43E;&#x43A;&#x440;&#x443;&#x436;&#x435;&#x43D;&#x438;&#x44F;", &#x41E;&#x43F;&#x442;&#x438;&#x43A;&#x430; &#x438; &#x441;&#x43F;&#x435;&#x43A;&#x442;&#x440;&#x43E;&#x441;&#x43A;&#x43E;&#x43F;&#x438;&#x44F;, vol. 133, pp. 417-420, 2025, [DOI: 10.61011/OS.2025.04.60539.7311-24] [IF: 0.84, SJR: 0.28]</nothing></item><item key="6"><nothing>Alina Kuleshova, Irina Koryakina, Anastasiia Liubimova, Maria Timofeeva, Ekaterina Gunina, Kirill Bogdanov, Ivan Reznik, Svyatoslav Povarov, Soslan Khubezhov, Dmitriy Guzei, Andrey Minakov, Kazumi Toda-Peters, Amy Q. Shen, Mikhail Zyuzin, "Continuous fabrication of MOF-based memory elements via droplet microfluidic synthesis", Journal of Materials Chemistry A, 2024, [DOI: 10.1039/d4ta03126a] [IF: 12.90, SJR: 3.64]</nothing></item><item key="7"><nothing>Ivan Reznik, &#x415;.&#x41F;. &#x41A;&#x43E;&#x43B;&#x435;&#x441;&#x43E;&#x432;&#x430;, Anna Pestereva, Konstantin Baranov, Yury Osin, Bogdanov Kirill, Jacobus Swart, Stanislav Moshkalev, Anna Orlova, "Synthesis of Submicron CaCO3 Particles in 3D-Printed Microfluidic Chips Supporting Advection and Diffusion Mixing", Micromachines, vol. 15, pp. 652, 2024, [DOI: 10.3390/mi15050652] [IF: 3.36, SJR: 0.58]</nothing></item><item key="8"><nothing>Ivan Reznik, Mikhail Baranov, Sergei A. Cherevkov, Petr V. Konarev, Vladimir V. Volkov, Stanislav Moshkalev, Daria B. Trushina, "Microfluidic Vaterite Synthesis: Approaching the Nanoscale Particles", Nanomaterials, vol. 13, pp. 3075, 2023, [DOI: 10.3390/nano13233075] [IF: 5.08, SJR: 0.92]</nothing></item><item key="9"><nothing>Konstantin Baranov, Ivan Reznik, Sofia Karamysheva, Jacobus W. Swart, Stanislav Moshkalev, Anna Orlova, "Optical Properties of AgInS2 Quantum Dots Synthesized in a 3D-Printed Microfluidic Chip", Technologies, vol. 11, pp. 93, 2023, [DOI: 10.3390/technologies11040093] [IF: 5.60, SJR: 0.86]</nothing></item><item key="10"><nothing><![CDATA[A A Lazareva, Ivan Reznik, A Yu Dubavik, A V Veniaminov, A O Orlova, "Investigation of photoluminescence kinetics CuInS&lt;sub&gt;2&lt;/sub&gt;/ZnS quantum dots", Journal of Physics: Conference Series, vol. 2058, pp. 012007, 2021, [DOI: 10.1088/1742-6596/2058/1/012007] [IF: 0.54, SJR: 0.21]]]></nothing></item><item key="11"><nothing>Ivan Reznik, D. A. Kurshanov, A. Yu. Dubovik, Mikhail Baranov, S. A. Moshkalev, A. O. Orlova, A. V. Baranov, "Photostability and Photoinduced Processes in CuInS2/ZnS Quantum Dots and Their Hybrid Structures with Multilayer Graphene Nanoribbons", Optics and Spectroscopy, vol. 128, pp. 1901-1909, 2020, [DOI: 10.1134/s0030400x20110223] [IF: 0.89, SJR: 0.28]</nothing></item><item key="12"><nothing>Ivan Reznik, A. S. Zlatov, P. O. Il&#x2019;in, R. A. Zakoldaev, S. A. Moshkalev, A. O. Orlova, "Luminescent and Photoelectric Properties of Hybrid Structures Based on Multilayer Graphene and 0D and 2D Semiconductor Quantum Nanocrystals", Optics and Spectroscopy, vol. 128, pp. 733-741, 2020, [DOI: 10.1134/s0030400x2006017x] [IF: 0.89, SJR: 0.28]</nothing></item><item key="13"><nothing>Aleksandr P. Litvin, Anton A. Babaev, Peter S. Parfenov, Aliaksei Dubavik, Sergei A. Cherevkov, Mikhail Baranov, Kirill V. Bogdanov, Ivan Reznik, Pavel O. Ilin, Xiaoyu Zhang, Finn Purcell-Milton, Yurii K. Gun&#x2019;ko, Anatoly V. Fedorov, Alexander V. Baranov, "Ligand-Assisted Formation of Graphene/Quantum Dot Monolayers with Improved Morphological and Electrical Properties", Nanomaterials, vol. 10, pp. 723, 2020, [DOI: 10.3390/nano10040723] [IF: 5.08, SJR: 0.92]</nothing></item><item key="14"><nothing>Ivan Reznik, Andrey Zlatov, Mikhail Baranov, Roman Zakoldaev, Andrey Veniaminov, Stanislav Moshkalev, Anna Orlova, "Photophysical Properties of Multilayer Graphene&#x2013;Quantum Dots Hybrid Structures", Nanomaterials, vol. 10, pp. 714, 2020, [DOI: 10.3390/nano10040714] [IF: 5.08, SJR: 0.92]</nothing></item><item key="15"><nothing>Ivan Reznik, Anna A. Matiushkina, Aliaksei Dubavik, Anna O. Orlova, "Photoinduced change in SPIONs/CdSe/ZnS nanocomposites optical properties", Nanophotonics VIII, pp. 51, 2020, [DOI: 10.1117/12.2556898] </nothing></item><item key="16"><nothing>Anton A. Starovoytov, Olga I. Lepeshova, Natalia O. Alexeeva, Vladimir G. Solovyev, Yuliya A. Razumova, Ivan Reznik, Mikhail Baranov, "Optical properties of pseudoisocyanine molecular clusters embedded in a nanoporous alumina", Nanophotonics VII, pp. 39, 2018, [DOI: 10.1117/12.2307395] [IF: 6.94, SJR: 2.64]</nothing></item><item key="17"><nothing>Ivan Reznik, Yu. A. Gromova, A. S. Zlatov, Mikhail Baranov, A. O. Orlova, S. A. Moshkalev, V. G. Maslov, A. V. Baranov, A. V. Fedorov, "Hybrid structures based on quantum dots and graphene nanobelts", Optics and Spectroscopy, vol. 122, pp. 114-119, 2017, [DOI: 10.1134/s0030400x17010258] [IF: 0.82, SJR: 0.32]</nothing></item><item key="18"><nothing>Aisylu Kamalieva, Nikita Toropov, Ivan Reznik, Tigran Vartanyan, "Plasmon-assisted aggregation and spectral modification of the layered rhodamine 6G molecules", Optical and Quantum Electronics, vol. 48, 2016, [DOI: 10.1007/s11082-016-0841-2] [IF: 1.06, SJR: 0.32]</nothing></item><item key="19"><nothing>Ivan Reznik, Yulia A. Gromova, Andrei S. Zlatov, Mikhail Baranov, Anna O. Orlova, Stanislav A. Moshkalev, Vladimir G. Maslov, Alexander V. Baranov, Anatoly V. Fedorov, "Influence of the QD luminescence quantum yield on photocurrent in QD/graphene hybrid structures", SPIE Proceedings, vol. 9884, pp. 98843A, 2016, [DOI: 10.1117/12.2227777] </nothing></item><item key="20"><nothing>Yulia A. Gromova, Ivan Reznik, Ilia A. Vovk, Simas Rackauskas, Andrei V. Alaferdov, Anna A. Orlova, Stanislav A. Moshkalev, Alexander V. Baranov, Anatoly V. Fedorov, "Photoinduced conductivity enhancement in quantum dot/multilayer graphene nanostructures", MRS Proceedings, vol. 1787, pp. 15-19, 2015, [DOI: 10.1557/opl.2015.656] </nothing></item></response>
