© 2020 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Structural evolution of the cathode during cycling plays a vital role in the electrochemical performance of sodium-ion batteries. A strategy based on engineering the crystal structure coupled with chemical substitution led to the design of the layered P2@P3 integrated spinel oxide cathode Na0.5Ni0.1Co0.15Mn0.65Mg0.1O2, which shows excellent sodium-ion half/full battery performance. Combined analyses involving scanning transmission electron microscopy with atomic resolution as well as in situ synchrotron-based X-ray absorption spectra and in situ synchrotron-based X-ray diffraction patterns led to visualization of the inherent layered P2@P3 integrated spinel structure, charge compensation mec...
Two most challenging topics in the area of battery research and development, the phase evolution and...
Large-scale electric energy storage is fundamental to the use of renewable energy. Recently, researc...
Layered sodium transition metal oxides with the P2 structure, e.g. Na2/3[Ni1/3Mn2/3]O2, are regarded...
© 2020 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Structural evolution of the cathode during cycling...
Structural evolution of the cathode during cycling plays a vital role in the electrochemical perform...
Summary: Concepts in sodium oxide cathode composite structures have captured widespread attention; h...
The pursuit of high energy density while achieving long cycle life remains a challenge in developing...
Developing high-voltage cathode materials for sodium-ion batteries (SIBs) is both challenging and ex...
The ever-increasing demand for sustainable energy resources has driven the development of large-scal...
Layered transition metal oxide (NaxTMO2), being one of the most promising cathode candidates for sod...
Sodium-ion layered cathodes range along a vast variety of structures and chemical compositions that ...
Layered transition metal oxides have been broadly studied due to their great potential in applicatio...
The P3-type layered oxide Na0.5Ni0.25Mn0.75O2 is a promising manganese-rich positive electrode (cath...
The O3-type layered Na(NixFeyMnz)O2 (0 \u3c x, y, z \u3c 1) cathode materials have attracted great i...
The P3-type layered oxide Na0.5Ni0.25Mn0.75O2 is a promising manganese-rich positive electrode (cath...
Two most challenging topics in the area of battery research and development, the phase evolution and...
Large-scale electric energy storage is fundamental to the use of renewable energy. Recently, researc...
Layered sodium transition metal oxides with the P2 structure, e.g. Na2/3[Ni1/3Mn2/3]O2, are regarded...
© 2020 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Structural evolution of the cathode during cycling...
Structural evolution of the cathode during cycling plays a vital role in the electrochemical perform...
Summary: Concepts in sodium oxide cathode composite structures have captured widespread attention; h...
The pursuit of high energy density while achieving long cycle life remains a challenge in developing...
Developing high-voltage cathode materials for sodium-ion batteries (SIBs) is both challenging and ex...
The ever-increasing demand for sustainable energy resources has driven the development of large-scal...
Layered transition metal oxide (NaxTMO2), being one of the most promising cathode candidates for sod...
Sodium-ion layered cathodes range along a vast variety of structures and chemical compositions that ...
Layered transition metal oxides have been broadly studied due to their great potential in applicatio...
The P3-type layered oxide Na0.5Ni0.25Mn0.75O2 is a promising manganese-rich positive electrode (cath...
The O3-type layered Na(NixFeyMnz)O2 (0 \u3c x, y, z \u3c 1) cathode materials have attracted great i...
The P3-type layered oxide Na0.5Ni0.25Mn0.75O2 is a promising manganese-rich positive electrode (cath...
Two most challenging topics in the area of battery research and development, the phase evolution and...
Large-scale electric energy storage is fundamental to the use of renewable energy. Recently, researc...
Layered sodium transition metal oxides with the P2 structure, e.g. Na2/3[Ni1/3Mn2/3]O2, are regarded...