Publications of Beatriz Roldan Cuenya
All genres
Journal Article (249)
Journal Article
B. Roldan Cuenya: Operando Evolution of the Structure and Oxidation State of Size-Controlled Zn Nanoparticles during CO2 Electroreduction. , , , , , and Journal of the American Chemical Society 140 (30), 9383–9386 (2018).
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B. Roldan Cuenya: Influence of interfaces on the phonon density of states of nanoscale metallic multilayers: Phonon confinement and localization. , , , , , , , and Physical Review B 98 (2), 024308 (2018).
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B. Roldan Cuenya: Dynamic Changes in the Structure, Chemical State and Catalytic Selectivity of Cu Nanocubes during CO2 Electroreduction: Size and Support Effects. , , , , and Angewandte Chemie 130 (21), 6300–6305 (2018).
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B. Roldan Cuenya: Dynamic Changes in the Structure, Chemical State and Catalytic Selectivity of Cu Nanocubes during CO2 Electroreduction: Size and Support Effects. , , , , and Angewandte Chemie International Edition 57 (21), 6192–6197 (2018).
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B. Roldan Cuenya and : The chemical identity, state and structure of catalytically active centers during the electrochemical CO2 reduction on porous Fe–nitrogen–carbon (Fe–N–C) materials. , , , , , , Chemical Science 22 (9), 5064–5073 (2018).
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B. Roldan Cuenya and : Efficient Electrochemical Hydrogen Peroxide Production from Molecular Oxygen on Nitrogen-Doped Mesoporous Carbon Catalysts. , , , , , , , , , , , , , ACS Catalysis 8 (4), 2844–2856 (2018).
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B. Roldan Cuenya: Segregation Phenomena in Size-Selected Bimetallic CuNi Nanoparticle Catalysts. , , , , , , and The Journal of Physical Chemistry B 122 (2), 919–926 (2018).
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B. Roldan Cuenya: Prism-Shaped Cu Nanocatalysts for Electrochemical CO2 Reduction to Ethylene. , , and ACS Catalysis 8 (1), 531–535 (2018).
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B. Roldan Cuenya, and : Influence of the Fe:Ni Ratio and Reaction Temperature on the Efficiency of (FexNi1–x)9S8 Electrocatalysts Applied in the Hydrogen Evolution Reaction. , , , , , , , , , , ACS Catalysis 8 (2), 987–996 (2018).
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A. Zendegani, , , , , , , , , , , F. Körmann, J. Neugebauer, T. Hickel and B. Roldan Cuenya: Operando Phonon Studies of the Protonation Mechanism in Highly Active Hydrogen Evolution Reaction Pentlandite Catalysts. , Journal of the American Chemical Society 139 (41), 14360–14363 (2017).
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B. Roldan Cuenya, , and : Understanding activity and selectivity of metal-nitrogen-doped carbon catalysts for electrochemical reduction of CO2. , , , , , , Nature Communications 8, 944 (2017).
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B. Roldan Cuenya: Enhanced Carbon Dioxide Electroreduction to Carbon Monoxide over Defect-Rich Plasma-Activated Silver Catalysts. , , , , , , , , , , , , and Angewandte Chemie International Edition 56 (38), 11394–11398 (2017).
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B. Roldan Cuenya: Enhanced Carbon Dioxide Electroreduction to Carbon Monoxide over Defect-Rich Plasma-Activated Silver Catalysts. , , , , , , , , , , , , and Angewandte Chemie 129 (38), 11552–11556 (2017).
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B. Roldan Cuenya and : Ultrathin High Surface Area Nickel Boride (NixB) Nanosheets as Highly Efficient Electrocatalyst for Oxygen Evolution. , , , , , , , Advanced Energy Materials 7 (17), 1700381 (2017).
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B. Roldan Cuenya, and : NH3 Post‐Treatment Induces High Activity of Co‐Based Electrocatalysts Supported on Carbon Nanotubes for the Oxygen Evolution Reaction. , , , , , , ChemElectroChem 4 (8), 2091–2098 (2017).
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B. Roldan Cuenya: Improved CO2 Electroreduction Performance on Plasma-Activated Cu Catalysts via Electrolyte Design: Halide Effect. , and ACS Catalysis 7 (8), 5112–5120 (2017).
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B. Roldan Cuenya: Size-dependent reactivity of gold-copper bimetallic nanoparticles during CO2 electroreduction. , , and Catalysis Today 288, 30–36 (2017).
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B. Roldan Cuenya: Plasma-Activated Copper Nanocube Catalysts for Efficient Carbon Dioxide Electroreduction to Hydrocarbons and Alcohols. , , , , , and ACS Nano 11 (5), 4825–4831 (2017).
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B. Roldan Cuenya: New insights into working nanostructured electrocatalysts through operando spectroscopy and microscopy. , and Current Opinion in Electrochemistry 1 (1), 95–103 (2017).
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B. Roldan Cuenya, and : Synergistic Effect of Cobalt and Iron in Layered Double Hydroxide Catalysts for the Oxygen Evolution Reaction. , , , , , , , , , ChemSusChem 10 (1), 156–165 (2017).