Operando neutron reflectometry measurements were carried out to study the insertion of lithium into amorphous silicon film electrodes during cyclic voltammetry CV experiments at a scan rate of 0.01 mV s amp; 8722;1. The experiments allow mapping of regions where significant amounts of Li are incorporated released from the electrode and correlation of the results to modifications of characteristic peaks in the CV curve. High volume changes up to 390 accompanied by corresponding modifications of the neutron scattering length density which is a measure of the average Li fraction present in the electrode are observed during electrochemical cycling for potentials below 0.3 V lithiation and above 0.2 V delithiation , leading to a hysteret...
Les travaux de thèse présentés dans ce manuscrit portent sur l’étude d’électrodes de silicium, matér...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The work presented here focuses on electrodes made of silicon, a promising material to replace graph...
Operando neutron reflectometry measurements were carried out to study the insertion of lithium into ...
Neutron reflectometry is used to study in situ the intercalation of lithium into amorphous silicon e...
In situ neutron reflectometry and ex situ secondary ion mass spectrometry in combination with electr...
We present an operando neutron reflectometry study on the electrochemical incorporation of lithium i...
The lithiation of crystalline silicon was studied over several cycles using operando neutron reflect...
Li ion transport through thin (14–22 nm) amorphous silicon layers adjacent to lithium metal oxide la...
Silicon is a promising anode material for lithium ion batteries due to its ten times higher specific...
In the ongoing search for new negative electrode materials for lithium-ion batteries, amorphous sili...
The Li+ insertion and extraction characteristics at n-type and p-type Si(100) electrodes with differ...
This work details the in situ characterization of the interface between a silicon electrode and an e...
This contribution presents non-destructive measurements of lithium transport parameters (diffusivity...
Highly concentrated electrolytes have been found to improve the cycle life and Coulombic efficiency ...
Les travaux de thèse présentés dans ce manuscrit portent sur l’étude d’électrodes de silicium, matér...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The work presented here focuses on electrodes made of silicon, a promising material to replace graph...
Operando neutron reflectometry measurements were carried out to study the insertion of lithium into ...
Neutron reflectometry is used to study in situ the intercalation of lithium into amorphous silicon e...
In situ neutron reflectometry and ex situ secondary ion mass spectrometry in combination with electr...
We present an operando neutron reflectometry study on the electrochemical incorporation of lithium i...
The lithiation of crystalline silicon was studied over several cycles using operando neutron reflect...
Li ion transport through thin (14–22 nm) amorphous silicon layers adjacent to lithium metal oxide la...
Silicon is a promising anode material for lithium ion batteries due to its ten times higher specific...
In the ongoing search for new negative electrode materials for lithium-ion batteries, amorphous sili...
The Li+ insertion and extraction characteristics at n-type and p-type Si(100) electrodes with differ...
This work details the in situ characterization of the interface between a silicon electrode and an e...
This contribution presents non-destructive measurements of lithium transport parameters (diffusivity...
Highly concentrated electrolytes have been found to improve the cycle life and Coulombic efficiency ...
Les travaux de thèse présentés dans ce manuscrit portent sur l’étude d’électrodes de silicium, matér...
The ability to track electrode degradation, both spatially and temporally, is fundamental to underst...
The work presented here focuses on electrodes made of silicon, a promising material to replace graph...