Transition-metal (TM) oxides play an increasingly important role in technology today, including applications such as catalysis, solar energy harvesting, and energy storage. In many of these applications, the details of their electronic structure near the Fermi level are critically important for their properties. We propose a first-principles–based computational methodology for the accurate prediction of oxygen charge transfer in TM oxides and lithium TM (Li-TM) oxides. To obtain accurate electronic structures, the Heyd-Scuseria-Ernzerhof (HSE06) hybrid functional is adopted, and the amount of exact Hartree-Fock exchange (mixing parameter) is adjusted to reproduce reference band gaps. We show that the HSE06 functional with optimal mixing par...
Oxygen redox in Li‐rich oxides may boost the energy density of lithium‐ion batteries by incorporatin...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 19...
ABSTRACT: Oxygen loss can lead to high-capacity Li2MnO3-based lithium-rich layered cathodes. Substit...
Transition-metal (TM) oxides play an increasingly important role in technology today, including appl...
Transition-metal (TM) oxides play an increasingly important role in technology today, including appl...
Understanding the role of metal and oxygen in the redox process of layered 3d transition metal oxide...
The strength of the metal-oxygen (M-O) bond in oxides principally determines the band structure and ...
Conventional battery cathodes are limited by the redox capacity of the transition metal components. ...
The lithium-rich layered oxide materials (LLOs) have attracted much attention as candidates for the ...
We compare the accuracy of conventional semilocal density functional theory (DFT), the DFT+U method,...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
First-principles calculations within the local density approximation (LDA) or generalized gradient a...
Lithium batteries are important as the power source for portable electronic devices and could also b...
Lithium transition-metal oxides (LiTMO₂) are currently the preferred cathode materials for secondary...
The desire to increase the energy density of stoichiometric layered LiTMO2 (TM = 3d transition me...
Oxygen redox in Li‐rich oxides may boost the energy density of lithium‐ion batteries by incorporatin...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 19...
ABSTRACT: Oxygen loss can lead to high-capacity Li2MnO3-based lithium-rich layered cathodes. Substit...
Transition-metal (TM) oxides play an increasingly important role in technology today, including appl...
Transition-metal (TM) oxides play an increasingly important role in technology today, including appl...
Understanding the role of metal and oxygen in the redox process of layered 3d transition metal oxide...
The strength of the metal-oxygen (M-O) bond in oxides principally determines the band structure and ...
Conventional battery cathodes are limited by the redox capacity of the transition metal components. ...
The lithium-rich layered oxide materials (LLOs) have attracted much attention as candidates for the ...
We compare the accuracy of conventional semilocal density functional theory (DFT), the DFT+U method,...
International audienceThe structural stability and the redox mechanism of Li-rich layered oxides (LL...
First-principles calculations within the local density approximation (LDA) or generalized gradient a...
Lithium batteries are important as the power source for portable electronic devices and could also b...
Lithium transition-metal oxides (LiTMO₂) are currently the preferred cathode materials for secondary...
The desire to increase the energy density of stoichiometric layered LiTMO2 (TM = 3d transition me...
Oxygen redox in Li‐rich oxides may boost the energy density of lithium‐ion batteries by incorporatin...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 19...
ABSTRACT: Oxygen loss can lead to high-capacity Li2MnO3-based lithium-rich layered cathodes. Substit...