- Anton S. Konopatsky, Konstantin L. Firestein, Nikolai D. Evdokimenko, Alexander L. Kustov, Viktor S. Baidyshev, Il’ya V. Chepkasov, Zahar I. Popov, Andrei T. Matveev, Igor V. Shetinin, Denis V. Leybo, Ilia N. Volkov, Andrey M. Kovalskii, Dmitri Golberg, and Dmitry V. Shtansky. Microstructure and catalytic properties of Fe3O4/BN, Fe3O4(Pt)/BN, and FePt/BN heterogeneous nanomaterials in CO2 hydrogenation reaction: Experimental and theoretical insights. Journal of Catalysis,
402:130–142, 2021. DOI: 10.1016/j.jcat.2021.08.026 - Andrey M. Kovalskii, Ilia N. Volkov, Nikolay D. Evdokimenko, Olga P. Tkachenko, Denis V. Leybo, Ilya V. Chepkasov, Zakhar I. Popov, Andrei T. Matveev, Anton M. Manahov, Elizaveta S. Permyakova, Anton S. Konopatsky, Alexander L. Kustov, Dmitri V. Golberg, and Dmitry V. Shtansky. Hexagonal BN- and BNO-supported Au and Pt nanocatalysts in carbon monoxide oxidation and carbon dioxide hydrogenation reactions. Applied Catalysis B: Environmental,120891, 2021. DOI: 10.1016/j.apcatb.2021.120891
- Kustov Leonid M., Tarasov Andrei L., Kustov Alexander L., Tkachenko Olga P. Enhancement of Efficiency of Pd/Al2O3Catalysts in Selective Hydrogenation of Sec-Butylbenzene by Modification with H2SO4 or H2WO4. Metals, 11, 281, 2021. DOI: 10.3390/met11020281
- Kustov Alexander L., Tarasov Andrey L., Tkachenko Olga P., Mishin Igor V., Kapustin Gennady I., Kustov Leonid M. Ethanol to Acetaldehyde Conversion under Thermal and Microwave Heating of ZnO-CuO-SiO2 Modified with WC Nanoparticles. Molecules, 26, 1955, 2021. DOI: 10.3390/molecules26071955, IF=4.6.
- Kostyukhin Egor M., Kustov Alexander L., Evdokimenko Nikolay V., Bazlov Andrey I., Kustov Leonid M. Hydrothermal microwave-assisted synthesis of LaFeO3 catalyst for N2O decomposition. Journal of the American Ceramic Society, 104,
492-503, 2021. DOI: 10.1111/jace.17463 - Kustov Alexander L., Kustov Leonid M. IR-Spectroscopic Study of Complex Formation of Nitrogen Oxides (NO, N2O) with Cationic Forms of Zeolites and the Reactivity of Adsorbed Species in CO and CH4 Oxidation. Molecules, 27, 55, 2021. DOI: 10.3390/molecules27010055
- Ershov Boris G., Panich Nadezhda M., Bykov Gennadii L., Kustov Alexander L., Krasovskiy Vladimir G., Kustov Leonid M. Ozonation of Decalin as a Model Saturated Cyclic Molecule: A Spectroscopic Study. Molecules, 26, 5565, 2021. DOI: 10.3390/molecules26185565
- Sergei A. Chernyak, Alexander L. Kustov, Dmitrii N. Stolbov, Marina A. Tedeeva, Oksana Ya Isaikina, Konstantin I. Maslakov, Nadezhda V. Usoltseva, and Serguei V. Savilov. Chromium catalysts supported on carbon nanotubes and graphene nanoflakes for CO2-assisted oxidative dehydrogenation of propane. Applied Surface Science, 578:152099, 2022. DOI: 10.1016/j.apsusc.2021.152099
- Marina A. Tedeeva, Alexander L. Kustov, Petr V. Pribytkov, Gennady I. Kapustin, Alexander V. Leonov, Olga P. Tkachenko, Obid B. Tursunov, Nikolay D. Evdokimenko, and Leonid M. Kustov. Dehydrogenation of propane in the presence of CO2 on GaOx/SiO2 catalyst: Influence of the texture characteristics of the support. Fuel, 313:122698, 2022. DOI: 10.1016/j.fuel.2021.122698
- M. Mashkin, M. Tedeeva, A. A. Fedorova, A. Vasiliev, A. V. Egorov, P. Pribytkov, K. Kalmykov, G. Kapustin, I. Morozov, L. Kustov, and A. Kustov. CrOx/SiO2 mesoporous catalysts prepared using beta-cyclodextrin as a template and their catalytic properties in propane oxidative dehydrogenation in the presence of carbon dioxide. Microporous and Mesoporous Materials, 338:111967, 2022. DOI: 10.1016/j.micromeso.2022.1119672.111967
- D. Leybo, K. L. Firestein, N. D. Evdokimenko, A. A. Ryzhova, V. S. Baidyshev, I. V. Chepkasov, Z. I. Popov, A. L. Kustov, A. S. Konopatsky, D. V. Golberg, and D. V. Shtansky. Ball-Milled Processed, Selective Fe/h-BN Nanocatalysts for CO2 Hydrogenation. ACS Applied Nano Materials, 2022. DOI: 10.1021/acsanm.2c03540
- Nikolay Dmitrievich Evdokimenko, Gennady Ivanovich Kapustin, Olga Petrovna Tkachenko, Konstantin Borisovich Kalmykov, and Alexander Leonidovich Kustov. Zn doping effect on the performance of fe-based catalysts for the hydrogenation of CO2 to light hydrocarbons. Molecules, 27(3):1065, 2022. DOI: 10.3390/molecules27031065
- Leonid M. Kustov, Alexander L. Kustov, and Tapio Salmi. Microwave-assisted conversion of carbohydrates. Molecules, 27(5):1472, 2022. DOI: 10.3390/molecules27051472
- Medvedev Artem A., Beldova Daria A., Kalmykov Konstantin B., Kravtsov Alexey V., Tedeeva Marina A., Kustov Leonid M., Dunaev Sergey F., Kustov Alexander L. Carbon Dioxide Assisted Conversion of Hydrolysis Lignin Catalyzed by Nickel Compounds. Energies, 15, 6774, 2022. DOI: 10.3390/en15186774
- Kuzmicheva Galina, Chernyshev Vladimir, Kravchenko Galina, Pirutko Larisa, Khramov Evgeny, Bruk Lev, Pastukhova Zhanna, Kustov Aleksander, Kustov Leonid, Markova Ekaterina. Impact of composition and structural parameters on the catalytic activity of MFI type titanosilicalites. Dalton Transactions, 51,
3439-3451, 2022. DOI: 10.1039/d1dt04131b - Kustov Leonid M., Dunaev Sergey F., Kustov Alexander L. Nitrous Oxide Adsorption and Decomposition on Zeolites and Zeolite-like Materials. Molecules, 27, 398, 2022. DOI: 10.3390/molecules27020398
- A. A. Strekalova, A. A. Shesterkina, A. L. Kustov, and L. M. Kustov. Recent studies on the application of microwave-assisted method for the preparation of heterogeneous catalysts and catalytic hydrogenation processes. International Journal of Molecular Sciences, 24(9):8272, 2023. IF=4.9.
- A. A. Medvedev, A. L. Kustov, D. A. Beldova, K. B. Kalmykov, M. Y. Mashkin, A. A. Shesterkina, S. F. Dunaev, and L. M. Kustov. Influence of the method of Fe deposition on the surface of hydrolytic lignin on the activity in the process of its conversion in the presence of CO2. International Journal of Molecular Sciences, 24(2):1279—1290, 2023. DOI: 10.3390/ijms24021279
- Mashkin M.Y., Tedeeva M.A., Fedorova A.A., Fatula E.R., Egorov A.V., Dvoryak S.V., Maslakov K.I., Knotko A.V., Baranchikov A.E., Kapustin G.I., Petukhov D.I., Shatalova T.B., Morozov I.V., Kustov L.M., Kustov A.L. Synthesis of CexZr1-xO2/SiO2 supports for chromium oxide catalysts of oxidative dehydrogenation of propane with carbon dioxide. Journal of Chemical Technology and Biotechnology, 98,
1247-1259, 2023. DOI: 10.1002/jctb.7339 - Kartavova Kristina E., Mashkin Mikhail Yu., Kostin Mikhail Yu., Finashina Elena D., Kalmykov Konstantin B., Kapustin Gennady I., Pribytkov Petr V., Tkachenko Olga P., Mishin Igor V., Kustov Leonid M., Kustov Alexander L. Rhodium-Based Catalysts: An Impact of the Support Nature on the Catalytic Cyclohexane Ring Opening. Nanomaterials, 13, 936, 2023. DOI: 10.3390/nano13050936
- Vikanova K.V., Kustov A.L., Makhov E.A., Tkachenko O.P., Kapustin G.I., Kalmykov K.B., Mishin I.V., Nissenbaum V.D., Dunaev S.F., Kustov L.M. Rhenium-contained catalysts based on superacid ZrO2 supports for CO2 utilization. Fuel, 351, 128956, 2023. DOI: 10.1016/j.fuel.2023.128956
- Shesterkina Anastasiya A., Kirichenko Olga A., Tkachenko Olga P., Kustov Alexander L., Kustov Leonid M. Liquid-Phase Partial Hydrogenation of Phenylacetylene at Ambient Conditions Catalyzed by Pd-Fe-O Nanoparticles Supported on Silica. Nanomaterials, 13, 2247, 2023. DOI: 10.3390/nano13152247
- Medvedev Artem A., Kustov Alexander L., Beldova Daria A., Polikarpova Svetlana B., Ponomarev Valeriy E., Murashova Elena V., Sokolovskiy Pavel V., Kustov Leonid M. A Synergistic Effect of Potassium and Transition Metal Compounds on the Catalytic Behaviour of Hydrolysis Lignin in CO2-Assisted Gasification. Energies, 16, 4335, 2023. DOI: 10.3390/en16114335
- Petr V. Zemlianskii, Alexander L. Kustov, Gennady I. Kapustin, Nikolay A. Davshan, Konstantin B. Kalmykov, Vladimir V. Chernyshev, and Leonid M. Kustov. Kinetics of n2o decomposition over bulk and supported lacoo3 perovskites. Mendeleev Communications, 34(5):653—655, 2024. DOI: 10.1016/j.mencom.2024.09.009
- Marina A. Tedeeva, Alexander L. Kustov, Alexander M. Batkin, Cholpan Garifullina, Albert A. Zalyatdinov, Dan Yang, Yihu Dai, Yanhui Yang, and Leonid M. Kustov. Catalytic systems for hydrogenation of co2 to methanol. MOLECULAR CATALYSIS, 566:114403, 2024. DOI: 10.1016/j.mcat.2024.114403
- S. A. Malyshev, O. A. Shlyakhtin, S. Huang, G. M. Timofeev, G. N. Mazo, I. V. Roslyakov, A. V. Vasiliev, and A. L. Kustov. Metal-oxide nanocomposites by low temperature exsolution from perovskite-like la nickelates: Synthesis, morphology, and catalytic properties in co2 hydrogenation. Materials Research Bulletin, 179:112984, 2024. DOI: 10.1016/j.materresbull.2024.112984
- Obid Tursunov, Islom Karimov, Katarzyna Śpiewak, Xun Hu, Yuguang Zhou, Alexander Kustov, Fazara Md Ali Umi, and Roman Uvarov. Comprehensive study on social, compositional and thermal aspects of household solid waste for waste-to-energy potential estimation in tashkent city. ENERGY REPORTS,
12:430–441, 2024. DOI: 10.1016/j.egyr.2024.06.035 - Petr Zemlianskii, Daniil Morozov, Gennady Kapustin, Nikolai Davshan, B. Kalmykov Konstantin, Vladimir Chernyshev, Alexander Kustov, and Leonid Kustov. The influence of the synthesis route and microwave activation on the cufe2o4 spinel mixed oxide catalysts activity in n2o decomposition. Ceramics International, 2024. DOI: 10.1016/j.ceramint.2024.06.227
- Petr Zemlianskii, Daniil Morozov, Gennady Kapustin, Nikolai Davshan, P. Tkachenko Olga, B. Kalmykov Konstantin, Vladimir Chernyshev, Alexander Kustov, and Leonid Kustov. Supported lacoo3 perovskite-like oxides for n2o decomposition: The key role of the support nature and lacoo3 content. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 698:134546, 2024. DOI: 10.1016/j.colsurfa.2024.134546
- Natalya A. Gordeeva, Anastasiya A. Shesterkina, Kseniia V. Vikanova, and Alexander L. Kustov. Naphthalene and its derivatives hydrogenation for hydrogen storage: Comparative analysis of the role of noble and non-noble metal catalysts — a review. International Journal of Hydrogen Energy, (69):113—121, 2024. DOI: 10.1016/j.ijhydene.2024.04.340
- Anton Konopatsky, Alexander Kustov, Nikolay Evdokimenko, Anastasiya Shesterkina, Liubov A. Varlamova, Tatyana Teplyakova, Denis Leybo, Liubov Yu Antipina, Pavel B. Sorokin, Xiaosheng Fang, and Dmitry V. Shtansky. Layered ferrihydrite and bn nanoparticle heterostructures doped with ag for co<sub>2</sub> hydrogenation. ACS Applied Nano Materials, 2024. DOI: 10.1021/acsanm.4c00718
- Alexander L. Kustov, Timur R. Aymaletdinov, Anastasiya A. Shesterkina, Konstantin B. Kalmykov, Petr V. Pribytkov, Igor V. Mishin, Sergey F. Dunaev, and Leonid M. Kustov. Methane dry reforming: influence of the sio2 and al2o3 supports on the catalytic properties of ni catalysts. Mendeleev Communications, 34(2):221—223, 2024. DOI: 10.1016/j.mencom.2024.02.020
- Victoria S. Zhuravleva, Anastasiya A. Shesterkina, Anna A. Strekalova, Kseniia V. Vikanova, and Alexander L. Kustov. Recent progress in selective liquid-phase hydrogenation of furfural on heterogeneous ni-containing catalysts. Green Synthesis and Catalysis, 2025. DOI: 10.1016/j.gresc.2025.04.001
- Shesterkina, A., Strekalova, A., Mashkin, M., Mishin, I., Vikanova, K., Tursunov, O., Dunaev, S., and Kustov, A. Influence of the support nature of copper catalysts on catalytic properties in the hydrogenation of fatty acid esters. International Journal of Molecular Sciences 26, 7 (2025),
3289–3289. DOI: 10.3390/ijms26073289 - A. A. Strekalova, A. A. Shesterkina, K. A. Beresnev, P. V. Pribytkov, G. I. Kapustin, I. V. Mishin, L. M. Kustov, and A. L. Kustov. Microwave synthesis of transition metal (Fe, Co, Ni)-supported catalysts for СО2 hydrogenation. Catalysts, 16(1):111, 2026. DOI: 10.3390/catal16010111
- M. A. Tedeeva, M. Y. Mashkin, V. L. Baybursky, P. V. Pribytkov, E. V. Murashova, K. B. Kalmykov, A. A. Shesterkina, G. I. Kapustin, O. P. Tkachenko, S. F. Dunaev, L. M. Kustov, and A. L. Kustov. Effect of chromium precursor on the catalytic behavior of chromium oxide catalysts in oxidative propane and isobutane dehydrogenation with carbon dioxide. Catalysts, 15(3):226, 2025. DOI: 10.3390/catal15030226
- Anna S. Makova, Mikhail Yu. Mashkin, Igor V. Mishin, Gennady I. Kapustin, Olga P. Tkachenko, Konstantin B. Kalmykov, Alexander L. Kustov, Leonid M. Kustov, Synthesis of zeolites with a ferrierite structure by hydrothermal and solvothermal methods and their activity in N2O decomposition. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025, 727, DOI: 10.1016/j.colsurfa.2025.138472
- Singh, O., Tedeeva, M.A., Igonina, M.S. Petr V. Pribytkov, Konstantin B. Kalmykov, Gennadiy I. Kapustin, Vera D. Nissenbaum, Igor V. Mishin, Sergey F. Dunaev, Leonid M. Kustov & Alexander L. Kustov. Properties of CrOx(inc)/MCM-41 catalysts obtained by chromium incorporation and its catalytic activity in the reaction of propane dehydrogenation in the presence of CO2. J Porous Mater 32,
2329–2348 (2025). https://doi.org/10.1007/s10934-025-01850-6. - Mikhail Yu. Mashkin, Anna A. Fedorova, Roman A. Efremov, Alexander M. Batkin, Gennady I. Kapustin, Igor V. Mishin, Olga P. Tkachenko, Irek R. Nizameev, Leonid M. Kustov, Alexander L. Kustov. Indium-zirconium oxide catalysts: An impact of dopants on CO2 hydrogenation to methanol. Inorganic Chemistry Communications, 2025, 181,1, 115145. DOI: 10.1016/j.inoche.2025.115145
- A. Shesterkina, C. Zhdanova, N. Davshan, A. Medvedev, K. Kalmykov, S. Dunaev, L. Kustov, and A. Kustov. Co2 hydrogenation to methanol on the incapsulated cu-zn catalyst: effect of the mcm-41 and sba-15 supports and the method of preparation on catalytic activity. Green Synthesis and Catalysis, 2026. DOI: 10.1016/j.gresc.2025.04.004