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Daniel Estevez ,Haritz Etxeberria, Victoria Laura Barrio
The Development of Ni-Al Aerogel-Based Catalysts via Supercritical CO2 Drying for Photocatalytic CO2 Methanation
Catalysts,
2025;
15 (7)
-
I. Rey, V.L. Barrio, I. Agirre
Environmental assessment of a hydrogen supply chain using LOHC system with novel low-PGM catalysts: A life cycle approach
International Journal of Hydrogen Energy,
2025;
142,
616 - 626
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Kevin Alconada, Fatima Mariño, Ion Agirre and Victoria Laura Barrio*
Exploring Perhydro-Benzyltoluene Dehydrogenation Using Sulfur-Doped PtMo/Al2O3 Catalysts
Catalysts,
2025;
15
-
K. Alconada* , I. Agirre , V.L. Barrio
Synergistic effects of Pt-doping in Ni/Al2O3 catalysts for hydrogen storage using benzyltoluene as LOHC
International Journal of Hydrogen Energy,
2025;
130,
631 - 643
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Alconada, K. , Barrio, V.L.
Evaluation of bimetallic Pt–Co and Pt–Ni catalysts in LOHC dehydrogenation
International Journal of Hydrogen Energy,
2024;
51
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Villamayor, A. , Berasategui, E.G. , Galyamin, D. , Rojas, S. , Barrio, L.V.
Highly active ultralow loading Pt electrodes for hydrogen evolution reaction developed by magnetron sputtering
International Journal of Hydrogen Energy,
2024;
64
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Villamayor, A. , Alba, A. , Gutierrez-Berasategui, E. , Barrio, L.V. , Rojas, S.
Magnetron Sputtered Low-Platinum Loading Electrode as HER Catalyst for PEM Electrolysis
2024;
14
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Alconada, K. , Barrio, V.L.
Enhancing perhydrobenzyltoluene dehydrogenation performance with Co, Mo and Mn metal oxides: A comparative study with Pt/Al2O3 catalyst
Applied Catalysis B: Environmental,
2024;
357
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Méndez-Mateos, David ; Barrio, V. Laura ; Requies, Jesús.; Gil-Calvo, Miryam
Graphene-based versus alumina supports on CO2 methanation using lanthanum-promoted nickel catalysts
Environmental Science and Pollution Research,
2024;
31, Issue 25,
36093 - 36117
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Rafael Canales *, Ion Agirre, V. Laura Barrio
Ni–Fe nanoparticles prepared using hydrotalcite precursors enhance the photocatalytic performance of CO2 methanation
2024;
56,
1435 - 1445
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Canales, R. , Gil-Calvo, M. , Barrio, V.L.
UV- and visible-light photocatalysis using Ni–Co bimetallic and monometallic hydrotalcite-like materials for enhanced CO2 methanation in sabatier reaction
Heliyon,
2023;
9(8)
-
Acha E, Agirre I, Barrio VL
Development of High Temperature Water Sorbents Based on Zeolites, Dolomite, Lanthanum Oxide and Coke
Materials (Q1),
2023;
16(7)
-
Seara, J. , Alcaide, F. , Ayerbe, E. , Barrio, V.L. , Benayad, A.
Influence of Long-Term Storage Conditions on Lithium Metal Anode Surface in Liquid Carbonate-Based Electrolyte
Journal of the Electrochemical Societ,
2022;
16(8)
-
Arias PL, Agirre I, Barrio VL
El futuro del hidrógeno verde / The future of green hydrogen
Dyna,
2022;
97(6),
1 - 4
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Angulo, María ;Agirre Arisketa, Ion ;Arratibel, Alba ;Llosa Tanco, Margot ;Pacheco Tanaka, D. Alfredo ;Barrio Cagigal, V. Laura
Pore flow-through catalytic membrane reactor for steam methane reforming: characterization and performance
Reaction Chemistry & Engineering,
2022;
7,
2240 - 2253
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Bielsa, D., Oregui, M., Arias, P.L.
New insights into Mn2O3 based metal oxide granulation technique with enhanced chemical and mechanical stability for thermochemical energy storage in packed bed reactors
Solar Energy,
2022;
241,
248 - 261
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Torre, F., Sanchez, T.A., Doppiu, S., Arias, P.L., Palomo del Barrio, E.
Effect of atomic substitution on the sodium manganese ferrite thermochemical cycle for hydrogen production
Materials Today Energy,
2022;
29
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Méndez‐mateos, D. , Laura Barrio, V. , Requies, J.M. , Cambra, J.F.
Effect of the addition of alkaline earth and lanthanide metals for the modification of the alumina support in ni and ru catalysts in co2 methanation
Catalysts,
2021;
11(3)
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Agirre I, Acha E. Cambra JF, Barrio VL
Water sorption enhanced CO2 methanation process: Optimization of reaction conditions and study of various sorbents
Chemical Engineering Science,
2021;
239,
00092509
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E. Acha; D. Chen; J.F. Cambra
Comparison of novel olivine supported catalysts for high purity hydrogen production by CO2 sorption enhanced steam reforming
Journal of CO2 Utilization,
2020;
42