Amorphous hydrogenated silicon (a-Si:H) is known to be a perspective material for negative electrodes of modern lithium-ion batteries. The electrochemical lithium insertion into thin-film a-Si:H electrodes is studied using chronopotentiometry, cyclic voltammetry (CV), and electrochemical impedance spectroscopy (EIS). The electrodes were grown on stainless-steel substrates by glow discharge at the temperature of T = 100 and 250 oC. The insertion capacity of the films deposited at 250 oC is higher than that of the equally thick films deposited at 100 oC. The increase in the film thickness involves the drastic decrease of the insertion capacity during the potential cycling. An equivalent circuit is suggested for the lithium insertion to the el...
Lithium-ion (Li+) rechargeable batteries, compared to other popular rechargeable batteries, are the ...
To ensure safe and long-term operation of Li-ion batteries (LIBs), one important key strategy is to ...
140 pages, 152 referencesSilicon represents an expressive gain in energy density for negative electr...
The Li+ insertion and extraction characteristics at n-type and p-type Si(100) electrodes with differ...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
Silicon is a serious candidate to replace graphite in electrodes because it offers a specific capaci...
Amorphous silicon (α-Si) film was deposited on the surface of Li4Ti5O12 electrode by vacuum thermal...
In this work we reported, for the first time, the preparation by radio frequency sputtering and the ...
We investigated during the first lithiation/delithiation process the electrochemical reaction mechan...
Operando neutron reflectometry measurements were carried out to study the insertion of lithium into ...
The knowledge of Li diffusion in lithium silicide (LixSi) is nowadays of importance for the Li-ion b...
Des études antérieures ont montré que l'incorporation de groupements méthyles par dépôt assisté par ...
International audiencePure (a-Si:H) and methylated (a-Si0.95(CH3)0.05:H) amorphous silicon thin film...
The permeation, solubility, diffusion and segregation of lithium in amorphous silicon layers (∼100 n...
Lithium-ion (Li+) rechargeable batteries, compared to other popular rechargeable batteries, are the ...
To ensure safe and long-term operation of Li-ion batteries (LIBs), one important key strategy is to ...
140 pages, 152 referencesSilicon represents an expressive gain in energy density for negative electr...
The Li+ insertion and extraction characteristics at n-type and p-type Si(100) electrodes with differ...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
The next generation of lithium ion batteries (LIBs) with increased energy density for large-scale ap...
Silicon is a serious candidate to replace graphite in electrodes because it offers a specific capaci...
Amorphous silicon (α-Si) film was deposited on the surface of Li4Ti5O12 electrode by vacuum thermal...
In this work we reported, for the first time, the preparation by radio frequency sputtering and the ...
We investigated during the first lithiation/delithiation process the electrochemical reaction mechan...
Operando neutron reflectometry measurements were carried out to study the insertion of lithium into ...
The knowledge of Li diffusion in lithium silicide (LixSi) is nowadays of importance for the Li-ion b...
Des études antérieures ont montré que l'incorporation de groupements méthyles par dépôt assisté par ...
International audiencePure (a-Si:H) and methylated (a-Si0.95(CH3)0.05:H) amorphous silicon thin film...
The permeation, solubility, diffusion and segregation of lithium in amorphous silicon layers (∼100 n...
Lithium-ion (Li+) rechargeable batteries, compared to other popular rechargeable batteries, are the ...
To ensure safe and long-term operation of Li-ion batteries (LIBs), one important key strategy is to ...
140 pages, 152 referencesSilicon represents an expressive gain in energy density for negative electr...