Lithium-rich layered oxides (LRLO) are among the leading candidates for the next-generation cathode material for energy storage, delivering 50% excess capacity over commercially used compounds. Despite excellent prospects, voltage fade has prevented effective use of the excess capacity, and a major challenge has been a lack of understanding of the mechanisms underpinning the voltage fade. Here, using operando three-dimensional Bragg coherent diffractive imaging, we directly observe the nucleation of a mobile dislocation network in LRLO nanoparticles. The dislocations form more readily in LRLO as compared with a classical layered oxide, suggesting a link between the defects and voltage fade. We show microscopically how the formation of parti...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...
Great focus has recently been placed on anionic redox, to which high capacities of Li-rich layered o...
Lithium-rich layered oxides (LRLO) have drawn great attention recently as a high energy density cath...
Lithium-rich layered oxides (LRLO) are among the leading candidates for the next-generation cathode ...
Defects and their interactions in crystalline solids often underpin material properties and function...
Topological defects can markedly alter nanomaterial properties. This presents opportunities for “def...
Topological defects can markedly alter nanomaterial properties. This presents opportunities for “def...
Topological defects can markedly alter nanomaterial properties. This presents opportunities for “def...
Nanoscale disorder plays an essential role in guiding material properties which promise to solve man...
Nanoscale disorder plays an essential role in guiding material properties which promise to solve man...
Nanoscale disorder plays an essential role in guiding material properties which promise to solve man...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, >250 mAh g-1) suffer f...
AbstractLi-rich layered materials are important cathode compounds used in commercial lithium ion bat...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, >250 mAh g-1) suffer f...
Great focus has recently been placed on anionic redox, to which high capacities of Li-rich layered o...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...
Great focus has recently been placed on anionic redox, to which high capacities of Li-rich layered o...
Lithium-rich layered oxides (LRLO) have drawn great attention recently as a high energy density cath...
Lithium-rich layered oxides (LRLO) are among the leading candidates for the next-generation cathode ...
Defects and their interactions in crystalline solids often underpin material properties and function...
Topological defects can markedly alter nanomaterial properties. This presents opportunities for “def...
Topological defects can markedly alter nanomaterial properties. This presents opportunities for “def...
Topological defects can markedly alter nanomaterial properties. This presents opportunities for “def...
Nanoscale disorder plays an essential role in guiding material properties which promise to solve man...
Nanoscale disorder plays an essential role in guiding material properties which promise to solve man...
Nanoscale disorder plays an essential role in guiding material properties which promise to solve man...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, >250 mAh g-1) suffer f...
AbstractLi-rich layered materials are important cathode compounds used in commercial lithium ion bat...
Lithium-excess 3d-transition-metal layered oxides (Li1+xNiyCozMn1-x-y-zO2, >250 mAh g-1) suffer f...
Great focus has recently been placed on anionic redox, to which high capacities of Li-rich layered o...
High-voltage layered lithium- and manganese-rich (LMR) oxides have the potential to dramatically enh...
Great focus has recently been placed on anionic redox, to which high capacities of Li-rich layered o...
Lithium-rich layered oxides (LRLO) have drawn great attention recently as a high energy density cath...