This review outlines the developments in the structure, composition, size, and shape control of many important and emerging Li-ion battery materials on many length scales, and details very recent investigations on how the assembly and programmable order in energy storage materials have not only influenced and dramatically improved the performance of some Li-ion batteries, but offered new routes toward improved power densities. This review also describes and discusses material aspects of hybrid and multiphasic materials including silicon, germanium, a wide range of metal oxides, alloys and crystal structures, carbons and other important materials. Methods including engineered porosity that offer the energy density of Li-ion batteries and the...
This thesis describes the development of high-capacity, next generation Li-ion battery (LIB) electro...
Despite commercial success of LIBs for portable electronic devices, their low power density (compare...
While batteries of various chemistries have been responsible for powering everything from small elec...
This review outlines the developments in the structure, composition, size, and shape control of many...
Interest in high performance portable energy devices for electronics and electric vehicles is the ba...
The increasing role of technology in our lives necessitates the development of advanced energy stora...
The rapid development of electric vehicles and mobile electronic devices is the main driving force t...
Lithium ion batteries (LIBs) possess energy densities higher than those of the conventional batterie...
Lithium-ion batteries (LIBs) have revolutionized many facets of our everyday life, enabling devices ...
Since their successful commercialization in 1990s, lithium-ion batteries (LIBs) have been widely app...
AbstractThis review highlights the recent research advances in active nanostructured anode materials...
The Li-ion battery has for a number of years been a key factor that has enabled an ever increasing n...
Development of advanced electrode materials for Li ion battery (LIB) has attracted great attention d...
The aims of this thesis are i) to develop processing routes using alkali metals to create microstruc...
Lithium-ion batteries (LIBs) are rechargeable batteries that use lithium ions for the storage and re...
This thesis describes the development of high-capacity, next generation Li-ion battery (LIB) electro...
Despite commercial success of LIBs for portable electronic devices, their low power density (compare...
While batteries of various chemistries have been responsible for powering everything from small elec...
This review outlines the developments in the structure, composition, size, and shape control of many...
Interest in high performance portable energy devices for electronics and electric vehicles is the ba...
The increasing role of technology in our lives necessitates the development of advanced energy stora...
The rapid development of electric vehicles and mobile electronic devices is the main driving force t...
Lithium ion batteries (LIBs) possess energy densities higher than those of the conventional batterie...
Lithium-ion batteries (LIBs) have revolutionized many facets of our everyday life, enabling devices ...
Since their successful commercialization in 1990s, lithium-ion batteries (LIBs) have been widely app...
AbstractThis review highlights the recent research advances in active nanostructured anode materials...
The Li-ion battery has for a number of years been a key factor that has enabled an ever increasing n...
Development of advanced electrode materials for Li ion battery (LIB) has attracted great attention d...
The aims of this thesis are i) to develop processing routes using alkali metals to create microstruc...
Lithium-ion batteries (LIBs) are rechargeable batteries that use lithium ions for the storage and re...
This thesis describes the development of high-capacity, next generation Li-ion battery (LIB) electro...
Despite commercial success of LIBs for portable electronic devices, their low power density (compare...
While batteries of various chemistries have been responsible for powering everything from small elec...