Search Results - "Baggetto, Loıc"
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Elucidating the Phase Transformation of Li4Ti5O12 Lithiation at the Nanoscale
Published in ACS nano (26-04-2016)“…This work provides insight regarding the fundamental lithiation and delithiation mechanism of the popular lithium ion battery anode material, Li4Ti5O12 (LTO)…”
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2
All-Solid-State Lithium-Ion Microbatteries: A Review of Various Three-Dimensional Concepts
Published in Advanced energy materials (01-01-2011)“…With the increasing importance of wireless microelectronic devices the need for on‐board power supplies is evidently also increasing. Possible candidates for…”
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3
Germanium as negative electrode material for sodium-ion batteries
Published in Electrochemistry communications (01-09-2013)“…Germanium thin film electrodes show a reversible Na-ion reaction at potentials around 0.15/0.6V. The reaction is accompanied with a reversible capacity close…”
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4
Surface chemistry of metal oxide coated lithium manganese nickel oxide thin film cathodes studied by XPS
Published in Electrochimica acta (15-02-2013)“…[Display omitted] ► LiMn1.5Ni0.5O4 spinel thin films were prepared by RF magnetron sputtering. ► The effect of thin metal oxide coatings on cycling and surface…”
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5
Understanding the Role of NH4F and Al2O3 Surface Co-modification on Lithium-Excess Layered Oxide Li1.2Ni0.2Mn0.6O2
Published in ACS applied materials & interfaces (02-09-2015)“…In this work we prepared Li1.2Ni0.2Mn0.6O2 (LNMO) using a hydroxide co-precipitation method and investigated the effect of co-modification with NH4F and Al2O3…”
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6
Cu2Sb thin films as anode for Na-ion batteries
Published in Electrochemistry communications (01-02-2013)“…Cu2Sb thin films prepared by magnetron sputtering are evaluated as an anode material for Na-ion batteries. The starting material is composed of…”
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In Situ Determination of the Liquid/Solid Interface Thickness and Composition for the Li Ion Cathode LiMn1.5Ni0.5O4
Published in ACS applied materials & interfaces (12-11-2014)“…Using neutron reflectometry, we have determined the thickness and scattering length density profile of the electrode–electrolyte interface for the high-voltage…”
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8
In Situ Ambient Pressure X-ray Photoelectron Spectroscopy Studies of Lithium-Oxygen Redox Reactions
Published in Scientific reports (08-10-2012)“…The lack of fundamental understanding of the oxygen reduction and oxygen evolution in nonaqueous electrolytes significantly hinders the development of…”
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9
Effect of Morphology and Manganese Valence on the Voltage Fade and Capacity Retention of Li[Li 2/12 Ni 3/12 Mn 7/12 ]O 2
Published in ACS applied materials & interfaces (12-11-2014)Get full text
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10
High Energy Density All-Solid-State Batteries: A Challenging Concept Towards 3D Integration
Published in Advanced functional materials (11-04-2008)“…Rechargeable all‐solid‐state batteries will play a key role in many autonomous devices. Planar solid‐state thin film batteries are rapidly emerging but reveal…”
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11
Honeycomb-Structured Silicon: Remarkable Morphological Changes Induced by Electrochemical (De)Lithiation
Published in Advanced materials (Weinheim) (05-04-2011)“…Arrays of silicon honeycombs are evaluated as a negative electrode material for lithium‐ion microbatteries. The morphological changes of the structure are…”
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12
The electrochemical reactions of pure indium with Li and Na: Anomalous electrolyte decomposition, benefits of FEC additive, phase transitions and electrode performance
Published in Journal of power sources (2014)“…Indium thin films were evaluated as an anode material for Li-ion and Na-ion batteries (theoretical capacities of 1012 mAh g-1 for Li and 467 mAh g-1 for Na)…”
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13
Hydrogen evolution at the negative electrode of the all-vanadium redox flow batteries
Published in Journal of power sources (2014)“…This work demonstrates a quantitative method to determine the hydrogen evolution rate occurring at the negative carbon electrode of the all vanadium redox flow…”
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14
Efficient, durable protection of the Ti6242S titanium alloy against high-temperature oxidation through MOCVD processed amorphous alumina coatings
Published in Journal of materials science (01-04-2020)“…With their exceptional strength-to-weight ratio, titanium alloys find applications in numerous key enabling technologies. However, their implementation in…”
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15
Characterization of sodium ion electrochemical reaction with tin anodes: Experiment and theory
Published in Journal of power sources (2013)“…Tin anodes show a rich structure and reaction chemistry which we have investigated in detail. Upon discharge five plateaus are observed corresponding to β-Sn,…”
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16
Influence of Hydrocarbon and CO2 on the Reversibility of Li–O2 Chemistry Using In Situ Ambient Pressure X‑ray Photoelectron Spectroscopy
Published in Journal of physical chemistry. C (12-12-2013)“…Identifying fundamental barriers that hinder reversible lithium–oxygen (Li–O2) redox reaction is essential for developing efficient and long-lasting…”
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17
AlSb thin films as negative electrodes for Li-ion and Na-ion batteries
Published in Journal of power sources (01-12-2013)“…The electrochemical reactions of amorphous/nanocrystalline AlSb thin films prepared by magnetron sputtering are reported for the first time. The reaction with…”
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18
Effect of Morphology and Manganese Valence on the Voltage Fade and Capacity Retention of Li[Li2/12Ni3/12Mn7/12]O2
Published in ACS applied materials & interfaces (12-11-2014)“…We have determined the electrochemical characteristics of the high voltage, high capacity Li-ion battery cathode material Li[Li2/12Ni3/12Mn7/12]O2 prepared…”
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19
Fabrication and characterization of Li–Mn–Ni–O sputtered thin film high voltage cathodes for Li-ion batteries
Published in Journal of power sources (01-08-2012)“…Li-rich and stoichiometric Li1Mn1.5Ni0.5O4 (LMNO) cathode films have been successfully prepared by magnetron sputtering. Sputtering from a Li stoichiometric…”
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20
Evidence for the Formation of Nitrogen-Rich Platinum and Palladium Nitride Nanoparticles
Published in Chemistry of materials (23-12-2013)“…We report evidence for the formation of nitrogen-rich precious metal nanoparticles (Pt, Pd) prepared by reactive sputtering of the pure metal in a N2 plasma…”
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