High-capacity Ni-rich layered metal oxide cathodes are highly desirable to increase the energy density of lithium-ion batteries. However, these materials suffer from poor cycling performance, which is exacerbated by increased cell voltage. We demonstrate here the detrimental effect of ethylene carbonate (EC), a core component in conventional electrolytes, when NMC811 (LiNi0.8Mn0.1Co0.1O2) is charged above 4.4 V vs Li/Li+-the onset potential for lattice oxygen release. Oxygen loss is enhanced by EC-containing electrolytes-compared to EC-free-and correlates with more electrolyte oxidation/breakdown and cathode surface degradation, which increase concurrently above 4.4 V. In contrast, NMC111 (LiNi0.33Mn0.33Co0.33O2), which does not release oxy...
The growing demand for sustainable energy storage devices requires rechargeable lithium-ion batterie...
A major challenge for lithium-ion batteries based on nickel-rich layered oxide cathodes is capacity ...
Phase transition occurring during cycling plays a fundamentally important role in the cycling perfor...
High-capacity Ni-rich layered metal oxide cathodes are highly desirable to increase the energy densi...
Layered metal oxides with high nickel content are commonly used cathode materials in commercial lith...
The chemical and electrochemical reactions at the positive electrode-electrolyte interface in Li-ion...
The chemical and electrochemical reactions at the positive electrode–electrolyte interface in ...
Li-rich layered oxides are considered as one of the most promising cathode materials for secondary l...
The chemical and electrochemical reactions at the positive electrode-electrolyte interface in Li-ion...
AbstractA major challenge for lithium‐ion batteries based on nickel‐rich layered oxide cathodes is c...
A major challenge for lithium-ion batteries based on nickel-rich layered oxide cathodes is capacity ...
Abstract: A major challenge for lithium‐ion batteries based on nickel‐rich layered oxide cathodes is...
Although layered lithium nickel-rich oxides have become the state-of-the-art cathode materials for l...
As we push the boundaries of state-of-the-art lithium-ion intercalation materials, such as nickel-ri...
Poor cycling performance for many high voltage lithium ion batteries (LIB) has been attributed to da...
The growing demand for sustainable energy storage devices requires rechargeable lithium-ion batterie...
A major challenge for lithium-ion batteries based on nickel-rich layered oxide cathodes is capacity ...
Phase transition occurring during cycling plays a fundamentally important role in the cycling perfor...
High-capacity Ni-rich layered metal oxide cathodes are highly desirable to increase the energy densi...
Layered metal oxides with high nickel content are commonly used cathode materials in commercial lith...
The chemical and electrochemical reactions at the positive electrode-electrolyte interface in Li-ion...
The chemical and electrochemical reactions at the positive electrode–electrolyte interface in ...
Li-rich layered oxides are considered as one of the most promising cathode materials for secondary l...
The chemical and electrochemical reactions at the positive electrode-electrolyte interface in Li-ion...
AbstractA major challenge for lithium‐ion batteries based on nickel‐rich layered oxide cathodes is c...
A major challenge for lithium-ion batteries based on nickel-rich layered oxide cathodes is capacity ...
Abstract: A major challenge for lithium‐ion batteries based on nickel‐rich layered oxide cathodes is...
Although layered lithium nickel-rich oxides have become the state-of-the-art cathode materials for l...
As we push the boundaries of state-of-the-art lithium-ion intercalation materials, such as nickel-ri...
Poor cycling performance for many high voltage lithium ion batteries (LIB) has been attributed to da...
The growing demand for sustainable energy storage devices requires rechargeable lithium-ion batterie...
A major challenge for lithium-ion batteries based on nickel-rich layered oxide cathodes is capacity ...
Phase transition occurring during cycling plays a fundamentally important role in the cycling perfor...