Publications
Publications from the laboratory for Catalysis and Sustainable Chemistry
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Artsiusheuski M, Casati N, Clark A, Nachtegaal M, Verel R, van Bokhoven J, et al.
Controlling the mechanism of nucleation and growth enables synthesis of UiO‐66 metal‐organic framework with desired macroscopic properties
Angewandte Chemie International Edition. 2025; 64(4): e202415919 (13 pp.). https://doi.org/10.1002/anie.202415919
DORA PSI -
Leidinger PM, Panighel M, Sushkevich VL, Piseri P, Podestà A, van Bokhoven JA, et al.
Influence of zinc oxide nanoparticles on the carbon accumulation on silver exposed to carbon dioxide hydrogenation reaction conditions
Nanoscale. 2025; 17(5): 2608-2615. https://doi.org/10.1039/d4nr03766a
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van Bokhoven JA, Mestl G
A perspective of urgently required research into fundamental research into applied catalysis
Journal of Catalysis. 2025; 442: 115894 (6 pp.). https://doi.org/10.1016/j.jcat.2024.115894
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Batool SR, Sushkevich VL, van Bokhoven JA
Factors affecting the generation and catalytic activity of extra-framework aluminum Lewis acid sites in aluminum-exchanged zeolites
ACS Catalysis. 2024; 14: 678-690. https://doi.org/10.1021/acscatal.3c04195
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Beck A, Newton MA, van de Water LGA, van Bokhoven JA
The enigma of methanol synthesis by Cu/ZnO/Al2O3-based catalysts
Chemical Reviews. 2024; 124(8): 4543-4678. https://doi.org/10.1021/acs.chemrev.3c00148
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Blankenship AN, Toderaşc AT, Paunović V, van Bokhoven JA
Carbon dioxide origin during high-yield partial oxidation of methane to protected methyl esters
ACS Catalysis. 2024; 14(18): 13665-13671. https://doi.org/10.1021/acscatal.4c04105
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Brenig A, Wang C, Xu J, Deng F, Paunović V, van Bokhoven JA
Evidence of preferential aluminum site loss during reaction-induced dealumination
Journal of the American Chemical Society. 2024; 146(50): 34279-34284. https://doi.org/10.1021/jacs.4c13212
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Brenig A, Fischer JWA, Klose D, Jeschke G, van Bokhoven JA, Sushkevich VL
Redox and kinetic properties of composition‐dependent active sites in copper‐exchanged chabazite for direct methane‐to‐methanol oxidation
Angewandte Chemie International Edition. 2024; 63(45): e202411662 (12 pp.). https://doi.org/10.1002/anie.202411662
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Colbea C, Plodinec M, Guo M, Artiglia L, van Bokhoven JA, Willinger M
Correlated operando electron microscopy and photoemission spectroscopy in partial oxidation of ethylene over nickel
ACS Catalysis. 2024; 14(23): 17850-17861. https://doi.org/10.1021/acscatal.4c04437
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Colbea C, Plodinec M, Willinger M, van Bokhoven JA, Artiglia L
Development of a compact laser‐based heating stage for in situ spectroscopic characterizations
Surface and Interface Analysis. 2024; 56(5): 283-292. https://doi.org/10.1002/sia.7278
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Devos J, Sushkevich VL, Khalil I, Robijns S, de Oliveira-Silva R, Sakellariou D, et al.
Enhancing the acidity window of zeolites by low-temperature template oxidation with ozone
Journal of the American Chemical Society. 2024; 146(39): 27047-27059. https://doi.org/10.1021/jacs.4c08123
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Dubray FJ, Paunovic V, van Bokhoven JA
Optimization of sustainable aviation fuel production through experiment-eriven modeling of acid-catalyzed oligomerization
ACS Sustainable Chemistry and Engineering. 2024; 12(48): 17590-17599. https://doi.org/10.1021/acssuschemeng.4c08240
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Fischer JWA, Buttignol F, Brenig A, Klose D, Ferri D, Sushkevich V, et al.
Design principles of operando ultraviolet-visible and electron paramagnetic resonance spectroscopy setups for active site characterization in ion-exchanged zeolites
Catalysis Today. 2024; 429: 114503 (10 pp.). https://doi.org/10.1016/j.cattod.2023.114503
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Guo M, Dongfang N, Liu Q, Iannuzzi M, van Bokhoven JA, Artiglia L
Reaction intermediates involved in the epoxidation of ethylene over silver revealed by in situ photoelectron spectroscopy
Small. 2024: 2408432 (7 pp.). https://doi.org/10.1002/smll.202408432
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Guo M, Dongfang N, Iannuzzi M, van Bokhoven JA, Artiglia L
Structure and reactivity of active oxygen species on silver surfaces for ethylene epoxidation
ACS Catalysis. 2024; 14(13): 10234-10244. https://doi.org/10.1021/acscatal.4c01566
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Leidinger PM, Sushkevich VL, Pischetola C, Krumeich F, van Bokhoven JA, Artiglia L
Influence of alumina on the performance of Ag/ZnO based catalysts for carbon dioxide hydrogenation
Journal of Catalysis. 2024; 440: 115837 (9 pp.). https://doi.org/10.1016/j.jcat.2024.115837
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Liu Q, van Bokhoven JA
Water structures on acidic zeolites and their roles in catalysis
Chemical Society Reviews. 2024; 53(6): 3065-3095. https://doi.org/10.1039/d3cs00404j
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Maggiulli L, Sushkevich VL, Kröcher O, van Bokhoven JA, Ferri D
Correlating the nature of carbenium ions in zeolites to the product distribution in the methanol-to-olefins process
ACS Catalysis. 2024; 14: 11477-11489. https://doi.org/10.1021/acscatal.4c03185
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Pan Z, Wu X, Bodi A, van Bokhoven JA, Hemberger P
Catalytic pyrolysis mechanism of lignin moieties driven by aldehyde, hydroxyl, methoxy, and allyl functionalization: the role of reactive quinone methide and ketene intermediates
Green Chemistry. 2024; 26: 9899-9910. https://doi.org/10.1039/d4gc03143a
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Pare CWP, Rzepka P, Hemberger P, Bodi A, Hauert R, van Bokhoven JA, et al.
Formaldehyde-induced deactivation of ZSM5 catalysts during the methanol-to-hydrocarbons conversion
ACS Catalysis. 2024; 14(1): 463-474. https://doi.org/10.1021/acscatal.3c04279
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Paunović V, Wu X, Maggiulli L, Ferri D, Hemberger P, Bodi A, et al.
The formation, reactivity and transformation pathways of formaldehyde in the methanol-to-hydrocarbon conversion
Catalysis Science and Technology. 2024; 14(5): 1216-1228. https://doi.org/10.1039/D3CY01786A
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Rzepka P, Sheptyakov D, Wang C, van Bokhoven JA, Paunović V
How micropore topology influences the structure and location of coke in zeolite catalysts
ACS Catalysis. 2024; 14(8): 5593-5604. https://doi.org/10.1021/acscatal.4c00025
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Rzepka P, Signorile M, Huthwelker T, Checchia S, Rosso F, Bordiga S, et al.
Quantitative localisation of titanium in the framework of titanium silicalite-1 using anomalous X-ray powder diffraction
Nature Communications. 2024; 15(1): 7757. https://doi.org/10.1038/s41467-024-51788-7
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Sadykov II, Palagin D, Krumeich F, Plokhikh IV, van Bokhoven JA, Nachtegaal M, et al.
Water-assisted generation of catalytic interface: The case of interfacial Pt-FeOx(OH)y sites active in preferential carbon monoxide oxidation
Journal of Catalysis. 2024; 429: 115263 (11 pp.). https://doi.org/10.1016/j.jcat.2023.115263
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Usoltsev O, Stoian D, Skorynina A, Kozyr E, Njoroge PN, Pellegrini R, et al.
Restructuring of palladium nanoparticles during oxidation by molecular oxygen
Small. 2024; 20(42): 2401184 (11 pp.). https://doi.org/10.1002/smll.202401184
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Wang C, Aztiria T, Rzepka P, Verel R, Xu J, Deng F, et al.
Structural changes of ZSM-5 catalysts during methanol-to-hydrocarbons conversion processes
ACS Catalysis. 2024; 14(16): 12410-12424. https://doi.org/10.1021/acscatal.4c02625
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Wieser J, Wardecki D, Fischer JWA, Newton MA, Dejoie C, Knorpp AJ, et al.
Quantifying the hydration-dependent dynamics of Cu migration and activity in zeolite omega for the partial oxidation of methane
Angewandte Chemie International Edition. 2024; 63(49): e202407395 (9 pp.). https://doi.org/10.1002/anie.202407395
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Wieser J, Wardecki D, Fischer JWA, Newton MA, Dejoie C, Knorpp AJ, et al.
Quantifying the hydration‐dependent dynamics of copper migration and activity in zeolite omega for the partial oxidation of methane
Angewandte Chemie. 2024; 136(49): e202407395 (9 pp.). https://doi.org/10.1002/ange.202407395
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Alexandrova AN, Biteen JS, Coriani S, Geiger FM, Gewirth AA, Goward GR, et al.
Early-career and emerging researchers in physical chemistry volume 2
Journal of Physical Chemistry B. 2023; 127(43): 9211-9214. https://doi.org/10.1021/acs.jpcb.3c06596
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Artsiusheuski MA, Verel R, van Bokhoven JA, Sushkevich VL
Mechanism of hydrocarbon formation in methane and methanol conversion over copper-containing mordenite
ACS Catalysis. 2023; 13: 5864-5875. https://doi.org/10.1021/acscatal.2c06312
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Artsiusheuski MA, Verel R, van Bokhoven JA, Sushkevich VL
Selective oxidative dehydrogenation of ethane and propane over copper-containing mordenite: insights into reaction mechanism and product protection
Angewandte Chemie International Edition. 2023; 62(44): e202309180 (11 pp.). https://doi.org/10.1002/anie.202309180
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Artsiusheuski MA, Safonova O, Palagin D, van Bokhoven JA, Sushkevich VL
Structural evolution of copper-oxo sites in zeolites upon the reaction with methane investigated by means of Cu K-edge X-ray absorption spectroscopy
Journal of Physical Chemistry C. 2023; 127(20): 9603-9615. https://doi.org/10.1021/acs.jpcc.3c01496
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Beck A, Frey H, Huang X, Clark AH, Goodman ED, Cargnello M, et al.
Controlling the strong metal-support interaction overlayer structure in Pt/TiO2 catalysts prevents particle evaporation
Angewandte Chemie International Edition. 2023; 135(27): e202301468 (7 pp.). https://doi.org/10.1002/anie.202301468
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Beck A, Paunović V, van Bokhoven JA
Identifying and avoiding dead ends in the characterization of heterogeneous catalysts at the gas–solid interface
Nature Catalysis. 2023; 6: 873-884. https://doi.org/10.1038/s41929-023-01027-x
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Beck A, Kazazis D, Ekinci Y, Li X, Müller Gubler EA, Kleibert A, et al.
The extent of platinum-induced hydrogen spillover on cerium dioxide
ACS Nano. 2023; 17(2): 1091-1099. https://doi.org/10.1021/acsnano.2c08152
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Blankenship A, Artsiusheuski M, Sushkevich V, van Bokhoven JA
Recent trends, current challenges and future prospects for syngas-free methane partial oxidation
Nature Catalysis. 2023; 6(9): 748-762. https://doi.org/10.1038/s41929-023-01000-8
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Fischer JWA, Brenig A, Klose D, van Bokhoven JA, Sushkevich VL, Jeschke G
Methane oxidation over Cu2+/[CuOH]+ pairs and site‐specific kinetics in copper mordenite revealed by operando electron paramagnetic resonance and UV‐visible spectroscopy
Angewandte Chemie International Edition. 2023; 62(34): e202303574 (10 pp.). https://doi.org/10.1002/anie.202303574
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Gäumann P, Ferri D, Sheptyakov D, van Bokhoven JA, Rzepka P, Ranocchiari M
In situ neutron diffraction of Zn-MOF-74 reveals nanoconfinement-induced effects on adsorbed propene
Journal of Physical Chemistry C. 2023; 127(33): 16636-16644. https://doi.org/10.1021/acs.jpcc.3c03225
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Gäumann P, Rohrbach T, Artiglia L, Ongari D, Smit B, van Bokhoven JA, et al.
Tandem hydroformylation‐aldol condensation reaction enabled by Zn‐MOF‐74
Chemistry: A European Journal. 2023; 29(38): e202300939 (7 pp.). https://doi.org/10.1002/chem.202300939
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Ji Y, Blankenship AN, van Bokhoven JA
Heterogeneous Mn-based catalysts for the aerobic conversion of methane-to-methyl trifluoroacetate
ACS Catalysis. 2023; 13(6): 3896-3901. https://doi.org/10.1021/acscatal.2c06292
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Jin M, Ravi M, Lei C, Heard CJ, Brivio F, Tošner Z, et al.
Dynamical equilibrium between Brønsted and Lewis sites in zeolites: framework‐associated octahedral aluminum
Angewandte Chemie International Edition. 2023; 62(31): e202306183 (6 pp.). https://doi.org/10.1002/anie.202306183
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Liu Q, Tripp J, Mitchell C, Rzepka P, Sadykov II, Beck A, et al.
Influence of alloying and surface overcoating engineering on the electrochemical properties of carbon-supported PtCu nanocrystals
Journal of Alloys and Compounds. 2023; 968: 172128 (12 pp.). https://doi.org/10.1016/j.jallcom.2023.172128
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Newton MA, Zimmermann P, van Bokhoven JA
X-ray absorption spectroscopy (XAS): XANES and EXAFS
In: Wachs IE, Bañares MA, eds. Springer handbook of advanced catalyst characterization. Springer handbooks. Cham: Springer; 2023:565-600. https://doi.org/10.1007/978-3-031-07125-6_27
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Oh J, Beck A, Goodman ED, Roling LT, Boucly A, Artiglia L, et al.
Colloidally engineered Pd and Pt catalysts distinguish surface- and vapor-mediated deactivation mechanisms
ACS Catalysis. 2023; 13(3): 1812-1822. https://doi.org/10.1021/acscatal.2c04683
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Oh J, Boucly A, van Bokhoven JA, Artiglia L, Cargnello M
Palladium catalysts for methane oxidation: old materials, new challenges
Accounts of Chemical Research. 2023; 57(1): 23-36. https://doi.org/10.1021/acs.accounts.3c00454
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Pan Z, Puente-Urbina A, Batool SR, Bodi A, Wu X, Zhang Z, et al.
Tuning the zeolite acidity enables selectivity control by suppressing ketene formation in lignin catalytic pyrolysis
Nature Communications. 2023; 14(1): 4512 (9 pp.). https://doi.org/10.1038/s41467-023-40179-z
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Roger M, Artiglia L, Boucly A, Buttignol F, Agote-Arán M, van Bokhoven JA, et al.
Improving time-resolution and sensitivity of in situ X-ray photoelectron spectroscopy of a powder catalyst by modulated excitation
Chemical Science. 2023; 14(27): 7482-7491. https://doi.org/10.1039/d3sc01274c
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Sadykov II, Sushkevich VL, Krumeich F, Nuguid RJG, van Bokhoven JA, Nachtegaal M, et al.
Platinum‐iron(II) oxide sites directly responsible for preferential carbon monoxide oxidation at ambient temperature: an operando X‐ray absorption spectroscopy study
Angewandte Chemie International Edition. 2023; 62(1): e202214032 (11 pp.). https://doi.org/10.1002/anie.202214032
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Semivrazhskaya OO, Salionov D, Clark AH, Casati NPM, Nachtegaal M, Ranocchiari M, et al.
Deciphering the mechanism of crystallization of UiO-66 metal-organic framework
Small. 2023; 19(52): 2305771 (11 pp.). https://doi.org/10.1002/smll.202305771
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Usoltsev OA, Skorynina AA, Protsenko BO, Martin-Diaconescu V, Pellegrini R, Soldatov AV, et al.
Evolution of surface and bulk structure of supported palladium nanoparticles by in situ X-ray absorption and infrared spectroscopies: effect of temperature, CO and CH4 gas
Applied Surface Science. 2023; 614: 156171 (7 pp.). https://doi.org/10.1016/j.apsusc.2022.156171
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Wieser J, Knorpp AJ, Stoian DC, Rzepka P, Newton MA, van Bokhoven JA
Assessing the productivity of the direct conversion of methane‐to‐methanol over copper‐exchanged zeolite omega (MAZ) via oxygen looping
Angewandte Chemie International Edition. 2023; 62(40): e202305140 (9 pp.). https://doi.org/10.1002/anie.202305140
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Yousefzadeh H, Bozbag SE, Sushkevich V, van Bokhoven JA, Erkey C
Stepwise conversion of methane to methanol over Cu-mordenite prepared by supercritical and aqueous ion exchange routes and quantification of active Cu species by H2-TPR
Catalysis Communications. 2023; 174: 106574 (8 pp.). https://doi.org/10.1016/j.catcom.2022.106574
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Zhang Z, Pérez-Ramirez J, van Bokhoven JA, Bodi A, Hemberger P
Operando photoelectron photoion coincidence spectroscopy to detect short-lived intermediates in catalysis
Chimia. 2023; 77(3): 132-138. https://doi.org/10.2533/chimia.2023.132
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Artsiusheuski MA, van Bokhoven JA, Sushkevich VL
Structure of selective and nonselective dicopper (II) sites in CuMFI for methane oxidation to methanol
ACS Catalysis. 2022; 12(24): 15626-15637. https://doi.org/10.1021/acscatal.2c05299
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Batool SR, Sushkevich VL, van Bokhoven JA
Correlating Lewis acid activity to extra-framework aluminum species in zeolite Y introduced by ion-exchange
Journal of Catalysis. 2022; 408: 24-35. https://doi.org/10.1016/j.jcat.2022.02.010
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Beck A, Newton MA, Zabilskiy M, Rzepka P, Willinger MG, van Bokhoven JA
Drastic events and gradual change define the structure of an active copper-zinc-alumina catalyst for methanol synthesis
Angewandte Chemie International Edition. 2022; 61(15): e202200301 (8 pp.). https://doi.org/10.1002/anie.202200301
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Beck A, Newton MA, Zabilskiy M, Rzepka P, Willinger MG, van Bokhoven JA
Drastische Ereignisse und langsame Transformation definieren die Struktur eines aktiven Kupfer‐Zink‐Aluminiumoxid‐Katalysators für die Methanol Synthese
Angewandte Chemie. 2022; 134(15): e202200301 (9 pp.). https://doi.org/10.1002/ange.202200301
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Beck A, Rzepka P, Marshall KP, Stoian D, Willinger MG, van Bokhoven JA
Hydrogen interaction with oxide supports in the presence and absence of platinum
Journal of Physical Chemistry C. 2022; 126: 17589-17597. https://doi.org/10.1021/acs.jpcc.2c05478
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Boucly A, Artiglia L, Roger M, Zabilskiy M, Beck A, Ferri D, et al.
Water inhibition and role of palladium adatoms on Pd/Al2O3 catalysts during methane oxidation
Applied Surface Science. 2022; 606: 154927 (8 pp.). https://doi.org/10.1016/j.apsusc.2022.154927
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Cardoso C, Lam YL, San Gil RAS, Van Bokhoven JA, Pereira MM
Conversion of sugar diacetyls to bio-hydrocarbons by the catalytic cracking in a fixed bed with fresh and deactivated Beta zeolite
Catalysis Communications. 2022; 171: 106519 (10 pp.). https://doi.org/10.1016/j.catcom.2022.106519
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Cartagenova D, Bachmann S, Püntener K, Scalone M, Newton MA, Peixoto Esteves FA, et al.
Highly selective Suzuki reaction catalysed by a molecular Pd-P-MOF catalyst under mild conditions: role of ligands and palladium speciation
Catalysis Science and Technology. 2022; 12(3): 954-961. https://doi.org/10.1039/D1CY01351C
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Cartagenova D, Peixoto Esteves FA, Fischer NT, van Bokhoven JA, Ranocchiari M
Solvent-dependent textural properties of defective UiO-66 after acidic and basic treatment
Inorganic Chemistry Frontiers. 2022; 9(1): 70-77. https://doi.org/10.1039/D1QI00226K
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Dubray F, Paunović V, Ranocchiari M, van Bokhoven JA
Production of jet-fuel-range olefins via catalytic conversion of pentene and hexene over mesoporous Al-SBA-15 catalyst
Journal of Industrial and Engineering Chemistry. 2022; 114: 409-417. https://doi.org/10.1016/j.jiec.2022.07.030
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Frey H, Beck A, Huang X, van Bokhoven JA, Willinger MG
Dynamic interplay between metal nanoparticles and oxide support under redox conditions
Science. 2022; 376(6596): 982-987. https://doi.org/10.1126/science.abm3371
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Frey H, Beck A, Huang X, van Bokhoven JA, Willinger MG
Dynamic structural changes due to metal-support interaction under reactive conditions
Microscopy and Microanalysis. 2022; 28(S1): 152-153. https://doi.org/10.1017/S1431927622001507
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Gladich I, Chen S, Yang H, Boucly A, Winter B, van Bokhoven JA, et al.
Liquid-gas interface of iron aqueous solutions and Fenton reagents
Journal of Physical Chemistry Letters. 2022; 13(13): 2994-3001. https://doi.org/10.1021/acs.jpclett.2c00380
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Gladich I, Chen S, Yang H, Boucly A, Winter B, Van Bokhoven JA, et al.
Reply to "comment on 'liquid-gas interface of iron aqueous solutions and fenton reagents'"
Journal of Physical Chemistry Letters. 2022; 13(29): 6681-6682. https://doi.org/10.1021/acs.jpclett.2c01391
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Huang X, Beck A, Fedorov A, Frey H, Zhang B, Klötzer B, et al.
Visualizing structural and chemical transformations of an industrial Cu/ZnO/Al2O3 pre-catalyst during activation and CO2 reduction
ChemCatChem. 2022; 14(24): e202201280 (7 pp.). https://doi.org/10.1002/cctc.202201280
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Li M, Ihli J, Verheijen MA, Holler M, Guizar-Sicairos M, van Bokhoven JA, et al.
Alumina-supported NiMo hydrotreating catalysts aspects of 3D structure, synthesis, and activity
Journal of Physical Chemistry C. 2022; 126(43): 18536-18549. https://doi.org/10.1021/acs.jpcc.2c05927
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Liu Q, Ranocchiari M, van Bokhoven JA
Catalyst overcoating engineering towards high-performance electrocatalysis
Chemical Society Reviews. 2022; 51(1): 188-236. https://doi.org/10.1039/D1CS00270H
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Liu Q, Rzepka P, Frey H, Tripp J, Beck A, Artiglia L, et al.
Sintering behaviour of carbon-supported Pt nanoparticles and the effect of surface overcoating
Materials Today Nano. 2022; 20: 100273 (11 pp.). https://doi.org/10.1016/j.mtnano.2022.100273
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Ma Y, Souza Filho IR, Bai Y, Schenk J, Patisson F, Beck A, et al.
Hierarchical nature of hydrogen-based direct reduction of iron oxides
Scripta Materialia. 2022; 213: 114571 (7 pp.). https://doi.org/10.1016/j.scriptamat.2022.114571
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Pan Z, Bodi A, van Bokhoven JA, Hemberger P
Operando PEPICO unveils the catalytic fast pyrolysis mechanism of the three methoxyphenol isomers
Physical Chemistry Chemical Physics. 2022; 24(36): 21786-21793. https://doi.org/10.1039/d2cp02741k
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Pan Z, Bodi A, van Bokhoven JA, Hemberger P
On the absolute photoionization cross section and threshold photoelectron spectrum of two reactive ketenes in lignin valorization: fulvenone and 2-carbonyl cyclohexadienone
Physical Chemistry Chemical Physics. 2022; 24(6): 3655-3663. https://doi.org/10.1039/D1CP05206C
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Paunović V, Hemberger P, Bodi A, Hauert R, Van Bokhoven JA
Impact of nonzeolite-catalyzed formation of formaldehyde on the methanol-to-hydrocarbons conversion
ACS Catalysis. 2022; 12(21): 13426-13434. https://doi.org/10.1021/acscatal.2c02953
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Paunović V, Sushkevich V, Rzepka P, Artiglia L, Hauert R, Lee SS, et al.
Reactivation of catalysts for methanol-to-hydrocarbons conversion with hydrogen
Journal of Catalysis. 2022; 407: 54-64. https://doi.org/10.1016/j.jcat.2022.01.018
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Ramon AP, Li X, Clark AH, Safonova OV, Marcos FC, Assaf EM, et al.
In situ study of low-temperature dry reforming of methane over La2Ce2O7 and LaNiO3 mixed oxides
Applied Catalysis B: Environmental. 2022; 315: 121528 (16 pp.). https://doi.org/10.1016/j.apcatb.2022.121528
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Saedy S, Newton MA, Zabilskiy M, Lee JH, Krumeich F, Ranocchiari M, et al.
Copper-zinc oxide interface as a methanol-selective structure in Cu-ZnO catalyst during catalytic hydrogenation of carbon dioxide to methanol
Catalysis Science and Technology. 2022; 12(8): 2703-2716. https://doi.org/10.1039/d2cy00224h
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Salionov D, Semivrazhskaya OO, Casati NPM, Ranocchiari M, Bjelić S, Verel R, et al.
Unraveling the molecular mechanism of MIL-53(Al) crystallization
Nature Communications. 2022; 13(1): 3762 (9 pp.). https://doi.org/10.1038/s41467-022-31294-4
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Singh-Morgan A, Puente-Urbina A, van Bokhoven JA
Technology overview of fast pyrolysis of lignin: current state and potential for scale‐up
ChemSusChem. 2022; 15(14): e202200343 (18 pp.). https://doi.org/10.1002/cssc.202200343
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Völker LA, Meyet J, Berkson ZJ, Rochlitz L, van Bokhoven JA, Copéret C
Revisiting edge sites of γ-Al2O3 using needle-shaped nanocrystals and recoupling-time-encoded {27Al}-1H D-HMQC NMR spectroscopy
Journal of Physical Chemistry C. 2022; 126(14): 6351-6360. https://doi.org/10.1021/acs.jpcc.2c00979
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Wennmacher JTC, Mahmoudi S, Rzepka P, Lee SS, Gruene T, Paunović V, et al.
Electron diffraction enables the mapping of coke in ZSM-5 micropores formed during methanol-to-hydrocarbons conversion
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