1
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Golub F.S.
, Xiang Q.
, Bulushev D.A.
Single-Atom Catalysts Supported on Covalent Triazine Frameworks
Applied Catalysis A: General. 2025.
V.690. 120035
:1-15. DOI: 10.1016/j.apcata.2024.120035
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2
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Nishchakova A.D.
, Bulushev D.A.
, Trubina S.V.
, Kriventsov V.V.
, Fedorenko A.D.
, Plyusnin P.E.
, Stonkus O.A.
, Gusel'nikov A.V.
, Gusel'nikova T.Y.
, Okotrub A.V.
, Bulusheva L.G.
Controlled Dispersion of Ni Catalyst on N-Doped Carbon Support for Stable and Selective Hydrogen Production from Formic Acid
International Journal of Hydrogen Energy. 2024.
V.68. P.1080-1089. DOI: 10.1016/j.ijhydene.2024.04.322
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CAPlus
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3
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Nishchakova A.D.
, Bulushev D.A.
, Trubina S.V.
, Stonkus O.A.
, Shubin Y.V.
, Asanov I.P.
, Kriventsov V.V.
, Okotrub A.V.
, Bulusheva L.G.
Highly Dispersed Ni on Nitrogen-Doped Carbon for Stable and Selective Hydrogen Generation from Gaseous Formic Acid
Nanomaterials. 2023.
V.13. N3. 545
:1-18. DOI: 10.3390/nano13030545
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РИНЦ
CAPlusCA
PMID
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4
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Golub F.S.
, Gerasimov E.Y.
, Prosvirin I.P.
, Plusnin P.E.
, Bolotov V.A.
, Parmon V.N.
, Bulushev D.A.
Engineering of the N-Doped Carbon Support for Improved Performance of Supported Pd Catalysts in Hydrogen Production from Gas-Phase Formic Acid
International Journal of Hydrogen Energy. 2023.
V.48. N59. P.22439-22452. DOI: 10.1016/j.ijhydene.2023.03.042
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РИНЦ
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5
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Nishchakova A.D.
, Bulusheva L.G.
, Bulushev D.A.
Supported Ni Single-Atom Catalysts: Synthesis, Structure, and Applications in Thermocatalytic Reactions
Catalysts. 2023.
V.13. N5. 845
:1-29. DOI: 10.3390/catal13050845
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РИНЦ
CAPlusCA
OpenAlex
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6
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Bulushev D.A.
, Golub F.S.
, Trubina S.V.
, Zvereva V.V.
, Gerasimov E.Y.
, Prosvirin I.P.
, Navlani-García M.
, Jena H.S.
Pd Active Sites on Covalent Triazine Frameworks for Catalytic Hydrogen Production from Formic Acid
ACS Applied Nano Materials. 2023.
V.6. N14. P.13551-13560. DOI: 10.1021/acsanm.3c02199
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РИНЦ
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7
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Bulushev D.A.
, Bulusheva L.G.
Catalysts with Single Metal Atoms for the Hydrogen Production from Formic Acid
Catalysis Reviews: Science and Engineering. 2022.
V.64. N4. P.835-874. DOI: 10.1080/01614940.2020.1864860
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РИНЦ
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8
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Bulushev D.A.
, Chekhova G.N.
, Sobolev V.I.
, Chuvilin A.L.
, Fedoseeva Y.V.
, Gerasko O.A.
, Okotrub A.V.
, Bulusheva L.G.
Cucurbit[6]uril as a Co-Catalyst for Hydrogen Production from Formic Acid
Materials Today Energy. 2022.
V.26. 100998
:1-9. DOI: 10.1016/j.mtener.2022.100998
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РИНЦ
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9
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Bulushev D.A.
, Golub F.S.
, Trubina S.V.
, Zvereva V.V.
, Bulusheva L.G.
, Gerasimov E.Y.
, Navlani-García M.
, Krot A.D.
, Jena H.S.
Single-Atom Pd Catalysts Supported on Covalent Triazine Frameworks for Hydrogen Production from Formic Acid
ACS Applied Nano Materials. 2022.
V.5. N9. P.12887–12896. DOI: 10.1021/acsanm.2c02746
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РИНЦ
CAPlusCA
OpenAlex
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10
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Yang X.
, Bulushev D.A.
, Yang J.
, Zhang Q.
New Liquid Chemical Hydrogen Storage Technology
Energies. 2022.
V.15. N17. 6360
:1-18. DOI: 10.3390/en15176360
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CAPlus
OpenAlex
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11
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Bulushev D.A.
Advanced Catalysis in Hydrogen Production from Formic Acid and Methanol
Energies. 2021.
V.14. N20. 6810
:1-5. DOI: 10.3390/en14206810
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12
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Bulushev D.A.
Progress in Catalytic Hydrogen Production from Formic Acid over Supported Metal Complexes
Energies. 2021.
V.14. N5. 1334
:1-14. DOI: 10.3390/en14051334
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РИНЦ
CAPlus
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13
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Bulushev D.A.
, Nishchakova A.D.
, Trubina S.V.
, Stonkus O.A.
, Asanov I.P.
, Okotrub A.V.
, Bulusheva L.G.
Ni-N4 Sites in a Single-Atom Ni Catalyst on N-Doped Carbon for Hydrogen Production from Formic Acid
Journal of Catalysis. 2021.
V.402. P.264-274. DOI: 10.1016/j.jcat.2021.08.044
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РИНЦ
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14
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Sharma D.
, Bulusheva L.G.
, Bulushev D.A.
, Gupta N.
The Synthesis of Biphenyl through C–H Bond Activation in Benzene over a Pd Catalyst Supported on Graphene Oxide
New Journal of Chemistry. 2020.
V.44. N28. P.12178-12184. DOI: 10.1039/d0nj02230f
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РИНЦ
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15
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Bulushev D.A.
, Chuvilin A.L.
, Sobolev V.I.
, Pirutko L.V.
, Fedoseeva Y.V.
, Lobiak E.V.
, Modin E.
, Okotrub A.V.
, Bulusheva L.G.
Single Au Atoms on the Surface of N-Free and N-Doped Carbon: Interaction with Formic Acid and Methanol Molecules
Topics in Catalysis. 2019.
V.62. N5-6. P.508-517. DOI: 10.1007/s11244-019-01166-1
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РИНЦ
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16
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Bulushev D.A.
, Sobolev V.I.
, Pirutko L.V.
, Starostina A.V.
, Asanov I.P.
, Modin E.
, Chuvilin A.L.
, Gupta N.
, Okotrub A.V.
, Bulusheva L.G.
Hydrogen Production from Formic Acid over Au Catalysts Supported on Carbon: Comparison with Au Catalysts Supported on SiO2 and Al2O3
Catalysts. 2019.
V.9. N4. 376
:1-13. DOI: 10.3390/catal9040376
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РИНЦ
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17
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Golub F.S.
, Beloshapkin S.
, Gusel’nikov A.V.
, Bolotov V.A.
, Parmon V.N.
, Bulushev D.A.
Boosting Hydrogen Production from Formic Acid over Pd Catalysts by Deposition of N-Containing Precursors on the Carbon Support
Energies. 2019.
V.12. N20. 3885
:1-13. DOI: 10.3390/en12203885
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РИНЦ
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18
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Nishchakova A.D.
, Bulushev D.A.
, Stonkus O.A.
, Asanov I.P.
, Ishchenko A.V.
, Okotrub A.V.
, Bulusheva L.G.
Effects of the Carbon Support Doping with Nitrogen for the Hydrogen Production from Formic Acid over Ni Catalysts
Energies. 2019.
V.12. N21. 4111
:1-10. DOI: 10.3390/en12214111
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19
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Bulushev D.A.
, Ross J.R.H.
Towards Sustainable Production of Formic Acid
ChemSusChem. 2018.
V.11. N5. P.821-836. DOI: 10.1002/cssc.201702075
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20
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Bulushev D.A.
, Zacharska M.
, Beloshapkin S.
, Guo Y.
, Yuranov I.
Catalytic Properties of PdZn/ZnO in Formic Acid Decomposition for Hydrogen Production
Applied Catalysis A: General. 2018.
V.561. P.96-103. DOI: 10.1016/j.apcata.2018.05.025
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