Among current cathode materials, particular attention to Li/Mn-rich layered transition-metal oxides (LMR-NCM) emerged, due to their high energy content accompanied by concurrently low raw material cost. However, until today the step toward a successful market implementation is still impeded by substantial capacity and voltage fade phenomena upon cycling. Herein, we demonstrate a comprehensive structural and morphological approach to increase the long-term stability behavior of LMR-NCM materials within a lithium ion cell. Therefore, a recently introduced core–shell particle design concept was applied, which involves a Co-free and Mn-rich particle core and a low Co-containing shell. The resulting lower anionic redox activity of the shell is k...
Lithium-rich manganese-based cathode materials are expected to promote the commercialization of lith...
Li-rich layered materials that have Co-free and Mn-rich 3d-transition metals have the potential to i...
Spinel-type, lithium manganese oxides, e.g.LiMn2O4, are very appealing electrodes for upgrading lith...
Layered lithium- and manganese-rich oxides (LMROs), described as xLi2MnO3·(1–x)LiMO2 or Li1+yM1–yO2 ...
In recent years, Li- and Mn-rich layered oxides (LMRs) have been vigorously explored as promising ca...
With high capacity at low cost, Li- and Mn-rich (LMR) layered oxides are a promising class of cathod...
Li-rich layered oxides (LRLO) with specific energies beyond 900 Wh kg$^{−1}$ are one promising class...
Tuning geometrical parameters of lithium-mixed transition-metal oxide (LiTM) cathode materials is a ...
Li-rich layered materials are considered to be the promising low-cost cathodes for lithium-ion batte...
A lithium-rich layered structure in lithium-ion batteries (LIBs) has attracted much attention due to...
Spinel LiNi0.5Mn1.5O4 (LNM) is a potential high-voltage cathode for commercial lithium-ion batteries...
Compared to commercialized cathode materials, Li-rich layered oxide exhibits a superior mass energ...
Nickel-rich layered lithium transition-metal oxides, LiNi1?xMxO2 (M?=?transition metal), have been u...
Li-rich Mn-based oxides (LRMOs) are promising cathode materials for next-generation Li-ion batteries...
A spherical Core-Shell (CS) structured cathode material with an average composition of Li[Ni0.95Co0....
Lithium-rich manganese-based cathode materials are expected to promote the commercialization of lith...
Li-rich layered materials that have Co-free and Mn-rich 3d-transition metals have the potential to i...
Spinel-type, lithium manganese oxides, e.g.LiMn2O4, are very appealing electrodes for upgrading lith...
Layered lithium- and manganese-rich oxides (LMROs), described as xLi2MnO3·(1–x)LiMO2 or Li1+yM1–yO2 ...
In recent years, Li- and Mn-rich layered oxides (LMRs) have been vigorously explored as promising ca...
With high capacity at low cost, Li- and Mn-rich (LMR) layered oxides are a promising class of cathod...
Li-rich layered oxides (LRLO) with specific energies beyond 900 Wh kg$^{−1}$ are one promising class...
Tuning geometrical parameters of lithium-mixed transition-metal oxide (LiTM) cathode materials is a ...
Li-rich layered materials are considered to be the promising low-cost cathodes for lithium-ion batte...
A lithium-rich layered structure in lithium-ion batteries (LIBs) has attracted much attention due to...
Spinel LiNi0.5Mn1.5O4 (LNM) is a potential high-voltage cathode for commercial lithium-ion batteries...
Compared to commercialized cathode materials, Li-rich layered oxide exhibits a superior mass energ...
Nickel-rich layered lithium transition-metal oxides, LiNi1?xMxO2 (M?=?transition metal), have been u...
Li-rich Mn-based oxides (LRMOs) are promising cathode materials for next-generation Li-ion batteries...
A spherical Core-Shell (CS) structured cathode material with an average composition of Li[Ni0.95Co0....
Lithium-rich manganese-based cathode materials are expected to promote the commercialization of lith...
Li-rich layered materials that have Co-free and Mn-rich 3d-transition metals have the potential to i...
Spinel-type, lithium manganese oxides, e.g.LiMn2O4, are very appealing electrodes for upgrading lith...