Synthesis of Li ion battery materials via ball milling has been a huge area of growth, leading to new high-capacity electrode materials, such as a number of promising disordered rocksalt (DRS) phases. In prior work, it was generally assumed that the synthesis was facilitated simply by local heating effects during the milling process. In this work, we show that ball milling Li2MoO4 leads to a phase transformation to the high pressure spinel polymorph and we report electrochemical data for this phase. This observation of the formation of a high pressure polymorph shows that local heating effects alone cannot explain the phase transformation observed (phenakite to spinel) and so indicates the importance of other effects. In particular, we prop...
LiCoMnO4 was made at 550 °C in 2 h using a novel biotemplating synthetic methodology. High temperatu...
The electrochemical reactivity of ball-milled MoO3 powders was investigated in Li rechargeable cells...
Lithium-rich oxides are attracting intense interest as the next generation cathode materials for lit...
Synthesis of Li ion battery materials via ball milling has been a huge area of growth, leading to ne...
A staggering development over the last few years within the field of electrode materials, whatever b...
Acknowledgements: We would like to thank Faraday Institution CATMAT (FIRG016) project for funding. W...
Data depository includes the following: Powder X-ray diffraction (PXRD) of the ball-milled Li2MoO...
International audienceThis paper, by no means exhaustive, focuses on high-energy ball-milling of oxi...
Abstract The synthesis of sulfide solid electrolytes in ball mills by mechanochemical routes not on...
The synthesis of sulfide solid electrolytes in ball mills by mechanochemical routes not only is effi...
Spinel LiMn2O4 formed in a solid‐state reaction was treated with a high energy planetary ball mill. ...
Mechanochemistry routinely provides solid forms (polymorphs) that are difficult to obtain by convent...
Dendritic Li formation is one of the critical reasons for the failure of Li batteries. In order to i...
The synthesis of new materials for energy storage and conversion has received increasing attention o...
The effect of mechanical milling in a planetary ball mills on dispersity of the synthesized lithium ...
LiCoMnO4 was made at 550 °C in 2 h using a novel biotemplating synthetic methodology. High temperatu...
The electrochemical reactivity of ball-milled MoO3 powders was investigated in Li rechargeable cells...
Lithium-rich oxides are attracting intense interest as the next generation cathode materials for lit...
Synthesis of Li ion battery materials via ball milling has been a huge area of growth, leading to ne...
A staggering development over the last few years within the field of electrode materials, whatever b...
Acknowledgements: We would like to thank Faraday Institution CATMAT (FIRG016) project for funding. W...
Data depository includes the following: Powder X-ray diffraction (PXRD) of the ball-milled Li2MoO...
International audienceThis paper, by no means exhaustive, focuses on high-energy ball-milling of oxi...
Abstract The synthesis of sulfide solid electrolytes in ball mills by mechanochemical routes not on...
The synthesis of sulfide solid electrolytes in ball mills by mechanochemical routes not only is effi...
Spinel LiMn2O4 formed in a solid‐state reaction was treated with a high energy planetary ball mill. ...
Mechanochemistry routinely provides solid forms (polymorphs) that are difficult to obtain by convent...
Dendritic Li formation is one of the critical reasons for the failure of Li batteries. In order to i...
The synthesis of new materials for energy storage and conversion has received increasing attention o...
The effect of mechanical milling in a planetary ball mills on dispersity of the synthesized lithium ...
LiCoMnO4 was made at 550 °C in 2 h using a novel biotemplating synthetic methodology. High temperatu...
The electrochemical reactivity of ball-milled MoO3 powders was investigated in Li rechargeable cells...
Lithium-rich oxides are attracting intense interest as the next generation cathode materials for lit...