High-performance Mn-rich P2-phase Na<sub>2/3</sub>Mn<sub>0.8</sub>Fe<sub>0.1</sub>Ti<sub>0.1</sub>O<sub>2</sub> is synthesized by a ceramic method, and its stable electrochemical performance is demonstrated. <sup>23</sup>Na solid-state NMR confirms the substitution of Ti<sup>4+</sup> ions in the transition metal oxide layer and very fast Na<sup>+</sup> mobility in the interlayer space. The pristine electrode delivers a second charge/discharge capacity of 146.57/144.16 mA·h·g<sup>–1</sup> and retains 95.09% of discharge capacity at the 50th cycle within the voltage range 4.0–2.0 V at C/10. At 1C, the reversible specific capacity still reaches 99.40 mA·h·g<sup>–1</sup>, and capacity retention of 87.70% is achieved from second to 300th cycle. ...
P2 type Fe and Mn based layered sodium transition metal oxides are promising positive electrode mat...
Layered transition metal oxides have been broadly studied due to their great potential in applicatio...
P2-type Fe- and Mn-based layered sodium transition metal oxides are promising positive electrode mat...
In this study, we developed a doping technology capable of improving the electrochemical performance...
As a promising cathode material of sodium-ion battery, P2-type Na2/3Ni1/3Mn2/3O2 (NNMO) possesses a ...
The development of long-lasting and low-cost rechargeable batteries lies at the heart of the success...
International audienceLayered oxides are regarded as promising cathode materials for sodium-ion batt...
P2-type sodium transition metal oxide materials have a high theoretical capacity (∼170-210 mAh g-1) ...
Necessity of enery storage and battery production is soaring up steadily for the growth of portable ...
The structural evolution of electrode materials directly influences the performance of sodium-ion ba...
A combination of operando X-ray diffraction, pair distribution function (PDF) analysis coupled with ...
Mixing transition metal cations in nearly equiatomic proportions in layered oxide cathode materials ...
Layered transition metal oxide P2-Na$_{2/3}$Ni$_{1/3}$Mn$_{2/3}$O$_2$ usually suffers from large-vol...
Sodium-ion batteries are the next-generation in battery technology; however, their commercial develo...
Rechargeable sodium-ion batteries have drawn increasing attention as candidates for the post lithium...
P2 type Fe and Mn based layered sodium transition metal oxides are promising positive electrode mat...
Layered transition metal oxides have been broadly studied due to their great potential in applicatio...
P2-type Fe- and Mn-based layered sodium transition metal oxides are promising positive electrode mat...
In this study, we developed a doping technology capable of improving the electrochemical performance...
As a promising cathode material of sodium-ion battery, P2-type Na2/3Ni1/3Mn2/3O2 (NNMO) possesses a ...
The development of long-lasting and low-cost rechargeable batteries lies at the heart of the success...
International audienceLayered oxides are regarded as promising cathode materials for sodium-ion batt...
P2-type sodium transition metal oxide materials have a high theoretical capacity (∼170-210 mAh g-1) ...
Necessity of enery storage and battery production is soaring up steadily for the growth of portable ...
The structural evolution of electrode materials directly influences the performance of sodium-ion ba...
A combination of operando X-ray diffraction, pair distribution function (PDF) analysis coupled with ...
Mixing transition metal cations in nearly equiatomic proportions in layered oxide cathode materials ...
Layered transition metal oxide P2-Na$_{2/3}$Ni$_{1/3}$Mn$_{2/3}$O$_2$ usually suffers from large-vol...
Sodium-ion batteries are the next-generation in battery technology; however, their commercial develo...
Rechargeable sodium-ion batteries have drawn increasing attention as candidates for the post lithium...
P2 type Fe and Mn based layered sodium transition metal oxides are promising positive electrode mat...
Layered transition metal oxides have been broadly studied due to their great potential in applicatio...
P2-type Fe- and Mn-based layered sodium transition metal oxides are promising positive electrode mat...