1
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Bukhtiyarov A.V.
, Panafidin M.A.
, Prosvirin I.P.
, Smirnova N.S.
, Markov P.V.
, Baeva G.N.
, Mashkovsky I.S.
, Bragina G.O.
, Rameshan C.
, Gerasimov E.Y.
, Zubavichus Y.V.
, Bukhtiyarov V.I.
, Stakheev A.Y.
Deliberate Control of the Structure-Specific Active Sites in PdIn Bimetallic Catalysts Using Adsorbate Induced Segregation effects
Applied Surface Science. 2023.
V.608. 155086
:1-13. DOI: 10.1016/j.apsusc.2022.155086
WOS
Scopus
РИНЦ
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2
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Bukhtiyarov A.V.
, Panafidin M.A.
, Prosvirin I.P.
, Mashkovsky I.S.
, Markov P.V.
, Rassolov A.V.
, Smirnova N.S.
, Baeva G.N.
, Rameshan C.
, Rameshan R.
, Zubavichus Y.V.
, Bukhtiyarov V.I.
, Stakheev A.Y.
Boosting the Activity of PdAg2/Al2O3 Supported Catalysts Towards the Selective Acetylene Hydrogenation by Means of CO-Induced Segregation: A Combined NAP XPS and Mass-Spectrometry Study
Applied Surface Science. 2022.
V.604. 154497
:1-7. DOI: 10.1016/j.apsusc.2022.154497
WOS
Scopus
РИНЦ
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3
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Haunold T.
, Rameshan C.
, Bukhtiyarov A.V.
, Rupprechter G.
An Ultrahigh Vacuum-Compatible Reaction Cell for Model Catalysis under Atmospheric Pressure Flow Conditions
Review of Scientific Instruments. 2020.
V.91. N12. P.125101. DOI: 10.1063/5.0026171
WOS
Scopus
РИНЦ
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4
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Li H.
, Rameshan C.
, Bukhtiyarov A.V.
, Prosvirin I.P.
, Bukhtiyarov V.I.
, Rupprechter G.
CO2 Activation on Ultrathin ZrO2 Film by H2O Co-adsorption: In situ NAP-XPS and IRAS Studies
Surface Science. 2019.
V.679. P.139-146. DOI: 10.1016/j.susc.2018.08.028
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РИНЦ
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5
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Motin A.M.
, Haunold T.
, Bukhtiyarov A.
, Bera A.
, Rameshan C.
, Rupprechter G.
Surface Science Approach to Pt/Carbon Model Catalysts: XPS, STM and Microreactor Studies
Applied Surface Science. 2018.
V.440. P.680-687. DOI: 10.1016/j.apsusc.2018.01.148
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РИНЦ
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6
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Anic K.
, Bukhtiyarov A.V.
, Li H.
, Rameshan C.
, Rupprechter G.
CO Adsorption on Reconstructed Ir(100) Surfaces from UHV to mbar Pressure: A LEED, TPD, and PM-IRAS Study
The Journal of Physical Chemistry C. 2016.
V.120. N20. P.10838-10848. DOI: 10.1021/acs.jpcc.5b12494
WOS
Scopus
РИНЦ
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