High-entropy (HE) ceramics, by analogy with HE metallic alloys, are an emerging class of solid solutions composed of a large number of species. These materials offer the benefit of large compositional flexibility and can be used in a wide variety of applications, including thermoelectrics, catalysts, superionic conductors and battery electrodes. We show here that the HE concept can lead to very substantial improvements in performance in battery cathodes. Among lithium-ion cathodes, cation-disordered rocksalt (DRX)-type materials are an ideal platform within which to design HE materials because of their demonstrated chemical flexibility. By comparing a group of DRX cathodes containing two, four or six transition metal (TM) species, we show t...
Cation-disordered rocksalt (DRX) materials have emerged as a class of novel high-capacity cathodes f...
Li-rich layered materials that have Co-free and Mn-rich 3d-transition metals have the potential to i...
Cation-disordered rocksalts (DRXs) have emerged as a new class of high-capacity Li-ion cathode mater...
High-entropy (HE) ceramics, by analogy with HE metallic alloys, are an emerging class of solid solut...
For lithium-ion rechargeable batteries to meet society's ever-growing demands in electrical energy s...
With the increasing fossil energy consumptions and environmental concerns, new sustainable energy so...
The limited capacity of the positive electrode active material in non-aqueous rechargeable lithium-b...
With the increasing demand for renewable energy sources such as solar, geothermal, and wind energy, ...
The discovery of facile Li transport in disordered, Li-excess rocksalt materials has opened a vast n...
The rapid market growth of rechargeable batteries requires electrode materials that combine high pow...
In the present work, a new class of high entropy materials for energy storage applications is introd...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
High-entropy oxides based on transition metals, such as Mg0.2Co0.2Ni0.2Cu0.2Zn0.2O (TM-HEO), have re...
In recent years, the concept of entropy stabilization of crystal structures in oxide systems has led...
Mn-based Li-excess cation-disordered rocksalt (DRX) oxyfluorides are promising candidates for next-g...
Cation-disordered rocksalt (DRX) materials have emerged as a class of novel high-capacity cathodes f...
Li-rich layered materials that have Co-free and Mn-rich 3d-transition metals have the potential to i...
Cation-disordered rocksalts (DRXs) have emerged as a new class of high-capacity Li-ion cathode mater...
High-entropy (HE) ceramics, by analogy with HE metallic alloys, are an emerging class of solid solut...
For lithium-ion rechargeable batteries to meet society's ever-growing demands in electrical energy s...
With the increasing fossil energy consumptions and environmental concerns, new sustainable energy so...
The limited capacity of the positive electrode active material in non-aqueous rechargeable lithium-b...
With the increasing demand for renewable energy sources such as solar, geothermal, and wind energy, ...
The discovery of facile Li transport in disordered, Li-excess rocksalt materials has opened a vast n...
The rapid market growth of rechargeable batteries requires electrode materials that combine high pow...
In the present work, a new class of high entropy materials for energy storage applications is introd...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
High-entropy oxides based on transition metals, such as Mg0.2Co0.2Ni0.2Cu0.2Zn0.2O (TM-HEO), have re...
In recent years, the concept of entropy stabilization of crystal structures in oxide systems has led...
Mn-based Li-excess cation-disordered rocksalt (DRX) oxyfluorides are promising candidates for next-g...
Cation-disordered rocksalt (DRX) materials have emerged as a class of novel high-capacity cathodes f...
Li-rich layered materials that have Co-free and Mn-rich 3d-transition metals have the potential to i...
Cation-disordered rocksalts (DRXs) have emerged as a new class of high-capacity Li-ion cathode mater...