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1
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Greish A.A.
, Sokolovskiy P.V.
, Finashina E.D.
, Tkachenko O.P.
, Khabibullin T.R.
, Polikarpova S.B.
, Kirsanov V.Y.
, Ponomarev V.E.
, Medvedev A.A.
, Kustov L.M.
Dynamics of Hydrogen Sulfide Adsorption in Pulse Mode on Activated Carbons Produced from Plant Waste
Clean Technologies. 2026.
V.8. N3. 81
. DOI: 10.3390/cleantechnol8030081
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2
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Redina E.A.
, Kirichenko O.A.
, Novikov R.A.
, Krylov I.B.
, Chernova M.S.
, Gerasimov E.Y.
, Tkachenko O.P.
, Kapustin G.I.
, Kustov L.M.
“Upside-Down” Cr 2 O 3 /Pd 0 /TiO 2 Catalysts for Ambient Hydrogenation of Nitriles to Primary Amines: Insights into the Activity and Selectivity
ACS Catalysis. 2026.
V.16. N11. P.10174–10193. DOI: 10.1021/acscatal.6c00943
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3
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Karavaev A.A.
, Kapustin G.I.
, Cherednichenko K.A.
, Kustov L.M.
A novel method for the synthesis of hierarchical ZSM-5 zeolite in proton form
Mendeleev Communications. 2026.
V.36. N1. P.98-100. DOI: 10.71267/mencom.7852
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4
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Deyko G.S.
, Vergun V.V.
, Kravtsov L.A.
, Kapustin G.I.
, Glukhov L.M.
, Sinyashin O.G.
, Kustov L.M.
Effect of the porous structure and the presence of amino groups on selective adsorption of methane, ethane, and carbon dioxide on zirconium-based UiO-66 structures
Microporous and Mesoporous Materials. 2026.
V.400. 113880
. DOI: 10.1016/j.micromeso.2025.113880
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5
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Deyko G.S.
, Vergun V.V.
, Kravtsov L.A.
, Glukhov L.M.
, Chernyshev V.V.
, Kapustin G.I.
, Nissenbaum V.D.
, Sinyashin O.G.
, Kustov L.M.
Effect of the metal center on selective adsorption of methane, ethane, and carbon dioxide on Hf, Zr, and Ce-based UiO-66 and MOF-808 frameworks
Microporous and Mesoporous Materials. 2026.
V.407. 114118
. DOI: 10.1016/j.micromeso.2026.114118
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6
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Karavaev A.
, Makova A.
, Kustov L.
Microwave Synthesis of Zeolites and Zeolite-like Materials: Citius! Altius! Fortius!
Catalysts. 2026.
V.16. N4. 332
. DOI: 10.3390/catal16040332
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7
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Kustov L.
, Vergun V.
, Zakharov V.
, Aslanov L.
Metal–Organic Frameworks as Materials for Applications in Sensors for Toxicants
Crystals. 2026.
V.16. N5. 279
. DOI: 10.3390/cryst16050279
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8
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Shesterkina A.
, Zhdanova C.
, Davshan N.
, Medvedev A.
, Kalmykov K.
, Dunaev S.
, Kustov L.
, Kustov A.
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.
V.7. N3. P.328-336. DOI: 10.1016/j.gresc.2025.04.004
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9
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Makova A.
, Tkachenko O.
, Kapustin G.
, Leonov A.
, Kalmykov K.
, Pribytkov P.
, Kustov A.
, Ter-Akopyan M.
, Kustov L.
Influence of the Ferrierite Zeolite Synthesis Method on Physicochemical and Catalytic Characteristics in the N2O Decomposition Reaction
Arabian Journal for Science and Engineering. 2026.
V.51. P.1391–1400. DOI: 10.1007/s13369-025-10033-z
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10
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Strekalova A.A.
, Shesterkina A.A.
, Beresnev K.A.
, Pribytkov P.V.
, Kapustin G.I.
, Mishin I.V.
, Kustov L.M.
, Kustov A.L.
Microwave Synthesis of Transition Metal (Fe, Co, Ni)-Supported Catalysts for CO2 Hydrogenation
Catalysts. 2026.
V.16. N1. 111
. DOI: 10.3390/catal16010111
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11
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Alykova E.A.
, Sukhareva E.M.
, Burko A.A.
, Pichugin A.M.
, Dyachenko V.S.
, Savelev E.N.
, Butov G.M.
, Popov K.R.
, Kustov L.M.
, Novakov I.A.
Studies of the microwave-assisted reaction of carbocyclic ketones with aniline
Russian Chemical Bulletin. 2026.
V.75. N3. P.809-815. DOI: 10.1007/s11172-026-4935-0
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12
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Kuznetsova I.I.
, Polyakova O.V.
, Kultin D.Y.
, Lebedeva O.K.
, Kustov L.M.
Electrodeposited copper catalysts for the sustainable electrochemical reduction of nitrate to ammonia
Mendeleev Communications. 2026.
V.36. N3. P.273–275. DOI: 10.71267/mencom.7904
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13
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Shesterkina A.
, Myakota V.
, Pribytkov P.
, Dunaev S.
, Kapustin G.
, Mishin I.
, Gordeeva N.
, Kustov L.
, Kustov A.
Selective Hydrogenation of 1-Methylnaphthalene to 1-Methyldecalins with Supported Ni Catalysts for Hydrogen Storage: The Influence of the Nature of the Support
Molecules. 2026.
V.31. N11. 1782
. DOI: 10.3390/molecules31111782
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14
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Karavaev A.A.
, Cherednichenko K.A.
, Mishin I.V.
, Panin A.A.
, Kitashov Y.N.
, Kustov L.M.
Ultrafast microwave-assisted synthesis of nanosized HZSM-5 zeolite
Mendeleev Communications. 2026.
V.36. N3. P.347–349. DOI: 10.71267/mencom.7924
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15
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Redina E.A.
, Popova D.D.
, Tkachenko O.P.
, Sadovnikov A.A.
, Kustov L.M.
Liquid-Phase Selective Hydrogenation of Cumyl Hydroperoxide to α-Cumyl Alcohol over the Low-Loaded Pt/SiO 2 Catalyst under Ambient Conditions
Industrial & Engineering Chemistry Research. 2026.
V.65. N3. P.1579–1586. DOI: 10.1021/acs.iecr.5c04441
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16
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Singh O.
, Tedeeva M.A.
, Igonina M.S.
, Pribytkov P.V.
, Kalmykov K.B.
, Kapustin G.I.
, Nissenbaum V.D.
, Mishin I.V.
, Dunaev S.F.
, Kustov L.M.
, Kustov A.L.
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
Journal of Porous Materials. 2025.
V.32. N6. P.2329-2348. DOI: 10.1007/s10934-025-01850-6
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17
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Makova A.S.
, Panchenko V.N.
, Bolotov V.A.
, Davshan N.A.
, Mishin I.V.
, Timofeeva M.N.
, Shefer K.I.
, Ter-Akopyan M.
, Kustov L.M.
, Jhung S.H.
Microwave-assisted synthesis of solketal from glycerol and acetone in the presence of SAPO-34 and SAPO-5
Microporous and Mesoporous Materials. 2025.
V.381. 113361
. DOI: 10.1016/j.micromeso.2024.113361
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18
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Zemlianskii P.
, Morozov D.
, Kapustin G.
, Davshan N.
, Kalmykov K.
, Chernyshev V.
, Kustov A.
, Kustov L.
Correlations between synthetic conditions and catalytic activity of LaMO3 perovskite-like oxide materials (M: Fe, Co, Ni): The key role of glycine
ChemPhysMater. 2025.
V.4. N2. P.165-178. DOI: 10.1016/j.chphma.2024.12.002
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19
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Medvedev A.A.
, Beldova D.A.
, Nizameev I.R.
, Polikarpova S.B.
, Mashkin M.Y.
, Bayburskiy V.L.
, Sokolovskiy P.V.
, Kustov A.L.
, Kustov L.M.
Carbon Dioxide-Assisted Gasification of Fresh and Pyrolysis Residues of Macadamia F.Muell Nutshells: The Catalytic Properties of Na, K, and Co
Catalysts. 2025.
V.15. N1. 62
. DOI: 10.3390/catal15010062
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20
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Kuznetsova I.
, Kultin D.
, Lebedeva O.
, Nesterenko S.
, Murashova E.
, Kustov L.
Intermetallic Compound and Solid Solutions of Co75Me25 (Me: Si, Fe, Cr) as Catalysts for the Electrochemical Reaction of Nitrate Conversion to Ammonia
International Journal of Molecular Sciences. 2025.
V.26. N4. 1650
. DOI: 10.3390/ijms26041650
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