High-entropy materials (HEMs) with promising energy storage and conversion properties have recently attracted worldwide increasing research interest. Nevertheless, most research on the synthesis of HEMs focuses on a “trial and error” method without any guidance, which is very laborious and time-consuming. This review aims to provide an instructive approach to searching and developing new high-entropy energy materials in a much more efficient way. Toward materials design for future technologies, a fundamental understanding of the process/structure/property/performance linkage on an atomistic level will promote prescreening and selection of material candidates. With the help of computational material science, in which the fast development of ...
Exploring the vast compositional space offered by multicomponent systems or high entropy materials u...
High entropy alloys (HEAs), offering a multi-dimensional compositional space, provide almost limitle...
This PhD thesis is a part of the Accelerated Metallurgy (AccMet) project funded under the Seventh Fr...
High-entropy materials (HEMs) with promising energy storage and conversion properties have recently ...
The essential demand for functional materials enabling the realization of new energy technologies ha...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
The discovery of novel materials with desired properties is essential to the advancements of energy-...
This book is a reprint of a special issue of Metals (ISSN 2075-4701), titled High Entropy Materials:...
The global energy demand and energy crisis such as the use of fossil fuel for energy conversion and ...
The field of atomistic simulations of multicomponent materials and high entropy alloys is progressin...
The high entropy alloys have become the most intensely researched materials in recent times. They of...
The near equimolar and non-equimolar high entropy alloys (HEAs) having five or more major components...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
High-entropy materials, which consist of multiple elements occupying a single sublattice in a disord...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
Exploring the vast compositional space offered by multicomponent systems or high entropy materials u...
High entropy alloys (HEAs), offering a multi-dimensional compositional space, provide almost limitle...
This PhD thesis is a part of the Accelerated Metallurgy (AccMet) project funded under the Seventh Fr...
High-entropy materials (HEMs) with promising energy storage and conversion properties have recently ...
The essential demand for functional materials enabling the realization of new energy technologies ha...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
The discovery of novel materials with desired properties is essential to the advancements of energy-...
This book is a reprint of a special issue of Metals (ISSN 2075-4701), titled High Entropy Materials:...
The global energy demand and energy crisis such as the use of fossil fuel for energy conversion and ...
The field of atomistic simulations of multicomponent materials and high entropy alloys is progressin...
The high entropy alloys have become the most intensely researched materials in recent times. They of...
The near equimolar and non-equimolar high entropy alloys (HEAs) having five or more major components...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
High-entropy materials, which consist of multiple elements occupying a single sublattice in a disord...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
Exploring the vast compositional space offered by multicomponent systems or high entropy materials u...
High entropy alloys (HEAs), offering a multi-dimensional compositional space, provide almost limitle...
This PhD thesis is a part of the Accelerated Metallurgy (AccMet) project funded under the Seventh Fr...