Stacking faults driven by dislocations have been observed in layered transition-metal oxide cathodes both in cycled and uncycled materials. The reversibility of stacking-sequence changes directly impacts the material performance. Irreversible glide due to lattice invariance or local compositional changes can initiate a catastrophic sequence of degradation mechanisms. In this study we compare the chemomechanical properties of LiCoO2 and LiNiO2 by combining density functional theory and anisotropic linear elasticity theory. We calculate stacking fault energies as a function of Li content and quantify the extent to which excess Ni hinders stacking-sequence changes. We then characterize screw dislocations, which mediate stacking-sequence change...
Nickel-based layered oxides offer an attractive platform for the development of energy-dense cobalt-...
LixCoO2 and LixNiO2 (0.5<x<1) are prototype cathode materials in lithium ion batteries.Both systems ...
The defect chemistry in a series of layered lithium transition-metal oxides, Li<i>M</i>O<sub>2</sub>...
Chemical and mechanical properties interplay on the nanometric scale and collectively govern the fun...
Chemical and mechanical properties interplay on the nanometric scale and collectively govern the fun...
Chemical and mechanical properties interplay on the nanometric scale and collectively govern the fun...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
LiNiO2 (LNO) is a promising cathode material for next-generation Li-ion batteries due to its excepti...
This overview addresses the atomistic aspects of degradation of layered LiMO2 (M = Ni, Co, Mn) oxide...
This overview addresses the atomistic aspects of degradation of layered LiMO2 (M = Ni, Co, Mn) oxide...
Defects and their interactions in crystalline solids often underpin material properties and function...
The electrochemical properties of layered rock salt cathode materials are strongly influenced by def...
Nickel-based layered oxides offer an attractive platform for the development of energy-dense cobalt-...
Nickel-based layered oxides offer an attractive platform for the development of energy-dense cobalt-...
Nickel-based layered oxides offer an attractive platform for the development of energy-dense cobalt-...
LixCoO2 and LixNiO2 (0.5<x<1) are prototype cathode materials in lithium ion batteries.Both systems ...
The defect chemistry in a series of layered lithium transition-metal oxides, Li<i>M</i>O<sub>2</sub>...
Chemical and mechanical properties interplay on the nanometric scale and collectively govern the fun...
Chemical and mechanical properties interplay on the nanometric scale and collectively govern the fun...
Chemical and mechanical properties interplay on the nanometric scale and collectively govern the fun...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
The influence of elastic strain on the lithium vacancy formation and migration in bulk LiCoO_2 is eva...
LiNiO2 (LNO) is a promising cathode material for next-generation Li-ion batteries due to its excepti...
This overview addresses the atomistic aspects of degradation of layered LiMO2 (M = Ni, Co, Mn) oxide...
This overview addresses the atomistic aspects of degradation of layered LiMO2 (M = Ni, Co, Mn) oxide...
Defects and their interactions in crystalline solids often underpin material properties and function...
The electrochemical properties of layered rock salt cathode materials are strongly influenced by def...
Nickel-based layered oxides offer an attractive platform for the development of energy-dense cobalt-...
Nickel-based layered oxides offer an attractive platform for the development of energy-dense cobalt-...
Nickel-based layered oxides offer an attractive platform for the development of energy-dense cobalt-...
LixCoO2 and LixNiO2 (0.5<x<1) are prototype cathode materials in lithium ion batteries.Both systems ...
The defect chemistry in a series of layered lithium transition-metal oxides, Li<i>M</i>O<sub>2</sub>...