Density functional theory (DFT) has become an engine for driving ab-initio quantum mechanical simulations spanning a vast range of applications. However, conventional DFT has limitations of the accessible system size due to computational expense. Recent progress on linear scaling DFT methods has enabled us to investigate larger systems. In this paper, we investigate the numerical agreement between conventional DFT codes and ONETEP, a linear-scaling DFT code, for important materials properties particularly calculating the intercalation potential of spinel electrode materials. Modulating materials with high energy density is an important aspect that contributes to the significant gap in our knowledge of the factors. We provide typical simulat...
Substantial research activity is currently invested in the pursuit of next generation cathode materi...
Batteries that shuttle multivalent ions such as Mg[superscript 2+] and Ca[superscript 2+] ions are p...
Rechargeable Li batteries consist of an anode, electrolyte, and cathode. The cathode is typically an...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Many positive electrode materials in lithium ion batteries include transition metals, which are diff...
The design of novel cathode materials for Li-ion batteries would greatly benefit from accurate first...
Using a Madelung-Buckingham model, we study LixMn2O4 and its fluorine-substituted analogue to comput...
Density functional theory (DFT) in spin polarized generalized gradient approximation with Hubbard U ...
The ion-intercalation-based rechargeable batteries are emerging as the most efficient energy storage...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
Batteries that shuttle multivalent ions such as Mg2+ and Ca2+ ions are promising candidates for achi...
Spinel-based materials have historically been one of the most promising frameworks for Li-ion cathod...
First-principles calculations within the local density approximation (LDA) or generalized gradient a...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Lithium ion batteries (LIB) are regarded as one of the near-term solutions to the gloable energy sho...
Substantial research activity is currently invested in the pursuit of next generation cathode materi...
Batteries that shuttle multivalent ions such as Mg[superscript 2+] and Ca[superscript 2+] ions are p...
Rechargeable Li batteries consist of an anode, electrolyte, and cathode. The cathode is typically an...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Many positive electrode materials in lithium ion batteries include transition metals, which are diff...
The design of novel cathode materials for Li-ion batteries would greatly benefit from accurate first...
Using a Madelung-Buckingham model, we study LixMn2O4 and its fluorine-substituted analogue to comput...
Density functional theory (DFT) in spin polarized generalized gradient approximation with Hubbard U ...
The ion-intercalation-based rechargeable batteries are emerging as the most efficient energy storage...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
Batteries that shuttle multivalent ions such as Mg2+ and Ca2+ ions are promising candidates for achi...
Spinel-based materials have historically been one of the most promising frameworks for Li-ion cathod...
First-principles calculations within the local density approximation (LDA) or generalized gradient a...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Lithium ion batteries (LIB) are regarded as one of the near-term solutions to the gloable energy sho...
Substantial research activity is currently invested in the pursuit of next generation cathode materi...
Batteries that shuttle multivalent ions such as Mg[superscript 2+] and Ca[superscript 2+] ions are p...
Rechargeable Li batteries consist of an anode, electrolyte, and cathode. The cathode is typically an...