Today, lithium-ion batteries are widely used as power supplies in portable electronics such as laptops, smartphones and cameras. However, new applications such as full electric vehicles and energy storage stationary systems require enhanced battery performances. In particular, novel electrode materials with higher energy density are needed.MgH2 and TiH2 hydrides and mixtures of them have high electrochemical capacity (> 1 Ah/g). They have been studied as negative electrode materials in Li-ion batteries. The conversion reaction of lithium with these hydrides and the related microstructural changes have been deeply investigated to gain a better understanding of reaction mechanisms and their reversibility. The electrochemical properties of MgH...
International audienceMetal hydrides are promising high-capacity anode materials for Li-ion batterie...
International audienceThe electrochemical reactivity of the face centered cubic (fcc) TiH2hydride wi...
The impact on the performance of conversion-type MgH2 anodes by using solid state electrolyte is rep...
Today, lithium-ion batteries are widely used as power supplies in portable electronics such as lapto...
Conversion reactions in lithium batteries have been proved for several classes of materials, such as...
Classical electrodes for Li-ion technology operate via an insertion/de-insertion process. Recently, ...
The recently developed metal hydride (MH)-based material is considered to be a potential negative ma...
MgH2 has been recently proposed in 2008 as novel conversion material for negative electrodes in lith...
Conversion reactions in lithium batteries have been proved for several classes of materials, such as...
The state of the art of conversion reactions of metal hydrides (MH) with lithium is presented and di...
xLiH + M composites, where M = Mg or Ti, are suggested as new candidates for negative electrode for ...
Several studies have demonstrated that MgH2 is a promising conversion-type anode toward Li. A major ...
Magnesium hydride (MgH2) exhibits great potential for hydrogen and lithium storage. In this work, Mg...
MgH2 electrochemical conversion reaction is a valuable alternative to Li intercalation into graphite...
As substitutes for graphite, the negative electrode material commonly used in Li-ion batteries, hydr...
International audienceMetal hydrides are promising high-capacity anode materials for Li-ion batterie...
International audienceThe electrochemical reactivity of the face centered cubic (fcc) TiH2hydride wi...
The impact on the performance of conversion-type MgH2 anodes by using solid state electrolyte is rep...
Today, lithium-ion batteries are widely used as power supplies in portable electronics such as lapto...
Conversion reactions in lithium batteries have been proved for several classes of materials, such as...
Classical electrodes for Li-ion technology operate via an insertion/de-insertion process. Recently, ...
The recently developed metal hydride (MH)-based material is considered to be a potential negative ma...
MgH2 has been recently proposed in 2008 as novel conversion material for negative electrodes in lith...
Conversion reactions in lithium batteries have been proved for several classes of materials, such as...
The state of the art of conversion reactions of metal hydrides (MH) with lithium is presented and di...
xLiH + M composites, where M = Mg or Ti, are suggested as new candidates for negative electrode for ...
Several studies have demonstrated that MgH2 is a promising conversion-type anode toward Li. A major ...
Magnesium hydride (MgH2) exhibits great potential for hydrogen and lithium storage. In this work, Mg...
MgH2 electrochemical conversion reaction is a valuable alternative to Li intercalation into graphite...
As substitutes for graphite, the negative electrode material commonly used in Li-ion batteries, hydr...
International audienceMetal hydrides are promising high-capacity anode materials for Li-ion batterie...
International audienceThe electrochemical reactivity of the face centered cubic (fcc) TiH2hydride wi...
The impact on the performance of conversion-type MgH2 anodes by using solid state electrolyte is rep...