Search Results - "Acebedo, Begoña"
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Elucidating the Impact of Sodium Salt Concentration on the Cathode–Electrolyte Interface of Na–Air Batteries
Published in Journal of physical chemistry. C (12-07-2018)“…A promising approach to improve the specific capacity and cyclability in a Na–O2 cell using a pyrrolidinium-based ionic liquid electrolyte in a half-cell has…”
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P2 manganese rich sodium layered oxides: Rational stoichiometries for enhanced performance
Published in Journal of power sources (15-10-2018)“…Sodium layered oxide materials have shown excellent performance as cathodes in sodium ion batteries, due to their flexibility, versatility, and intrinsically…”
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Stabilization of P2 layered oxide electrodes in sodium-ion batteries through sodium evaporation
Published in Communications materials (23-07-2024)“…Sodium-ion batteries are well positioned to become, in the near future, the energy storage system for stationary applications and light electromobility…”
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High Performance Titanium Antimonide TiSb2 Alloy for Na-Ion Batteries and Capacitors
Published in Chemistry of materials (27-11-2018)“…Herein, we report for the first time the use of TiSb2 alloy as anode material for sodium-ion batteries (NIBs) and capacitors (NICs). The electrochemical…”
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An approach to overcome first cycle irreversible capacity in P2-Na2/3[Fe1/2Mn1/2]O2
Published in Electrochemistry communications (01-12-2013)“…The Earth-abundant high capacity Na2/3[Fe1/2Mn1/2]O2 sodium-ion battery cathode material has been synthesized by conventional solid state synthesis. X-ray…”
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Current Status and Future Perspective on Lithium Metal Anode Production Methods
Published in Advanced energy materials (01-04-2023)“…Lithium metal batteries (LMBs) are one of the most promising energy storage technologies that would overcome the limitations of current Li‐ion batteries, based…”
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On the role of ultrathin lithium metal anodes produced by thermal evaporation
Published in Journal of power sources (30-10-2024)“…Lithium metal anodes (LMAs) are the preferred option for the next generation of lithium batteries, where high energy density and longer cycle life are…”
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Synthesis and Electrochemistry Study of P2- and O3-phase Na2/3Fe1/2Mn1/2O2
Published in Electrochimica acta (10-11-2015)“…The successful phase separation of P2- and O3-phase Na2/3Fe1/2Mn1/2O2 is demonstrated using co-precipitation method. Although P2-phase displays superior…”
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LiNi0.5Mn1.5O4 Thin Films Grown by Magnetron Sputtering under Inert Gas Flow Mixtures as High‐Voltage Cathode Materials for Lithium‐Ion Batteries
Published in ChemElectroChem (01-02-2023)“…Delivering a commercial high‐voltage spinel LiNi0.5Mn1.5O4 (LNMO) cathode electrode for Li‐ion batteries would result in a significant step forward in terms of…”
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Surface Evolution of Lithium Titanate upon Electrochemical Cycling Using a Combination of Surface Specific Characterization Techniques
Published in Advanced materials interfaces (01-06-2020)“…Among the electrodes for Li‐ion batteries, Li4Ti5O12 (LTO) stands out as anode owing to its stability and safety, in part ascribed to its low surface…”
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Pr-doped ceria nanoparticles as intermediate temperature ionic conductors
Published in International journal of hydrogen energy (01-08-2011)“…One of the most important challenges for further development of solid oxide fuel cells is to develop new electrolytes which operate at intermediate…”
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High Performance Titanium Antimonide TiSb 2 Alloy for Na-Ion Batteries and Capacitors
Published in Chemistry of materials (27-11-2018)Get full text
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Sol-Gel Synthesized Antimony Anodes for Sodium-Ion Batteries: Identifying Key Parameters for Optimization
Published in Batteries (Basel) (01-09-2017)“…The potentially high gravimetric capacities of intermetallic anodes, coupled with the low cost and readily available materials used in sodium-ion batteries,…”
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LiNi 0.5 Mn 1.5 O 4 Thin Films Grown by Magnetron Sputtering under Inert Gas Flow Mixtures as High‐Voltage Cathode Materials for Lithium‐Ion Batteries
Published in ChemElectroChem (01-02-2023)“…Delivering a commercial high‐voltage spinel LiNi 0.5 Mn 1.5 O 4 (LNMO) cathode electrode for Li‐ion batteries would result in a significant step forward in…”
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Cover Feature: LiNi0.5Mn1.5O4 Thin Films Grown by Magnetron Sputtering under Inert Gas Flow Mixtures as High‐Voltage Cathode Materials for Lithium‐Ion Batteries (ChemElectroChem 3/2023)
Published in ChemElectroChem (01-02-2023)“…The Cover Feature illustrates the magnetron sputtering process with variable ratio of Ar/N as process gas that leads to the formation of thin‐films of…”
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Thin Film Electrodes: Surface Evolution of Lithium Titanate upon Electrochemical Cycling Using a Combination of Surface Specific Characterization Techniques (Adv. Mater. Interfaces 11/2020)
Published in Advanced materials interfaces (01-06-2020)“…Highly oriented thin‐film electrodes are the best playground to better understand the evolution of the electrode‐electrolyte interfaces during battery…”
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