Lithium-ion batteries (LIBs) commercially dominate portable energy storage and have been extended to hybrid/electric vehicles by utilizing electrode materials with enhanced energy density. However, the energy density and cycling life of LIBs must extend beyond the current reach of commercial electrodes to meet the performance requirements for transportation applications. Carbon-based anodes, serving as the main negative electrodes in LIBs, have an intrinsic capacity limitation due to the intercalation mechanism. Some nanostructured carbon materials offer very interesting reversible capacities and can be considered as future anode materials. However, their fabrication processes are often complicated and expensive. Theoretically, using a lith...
Sulfide compounds are interesting conversion electrode materials for Li-ion batteries, due to their ...
Lithium-ion batteries are essential energy storage devices for modern-day technology and for creatin...
The electrochemical performance of tin sulfide (SnS) nanorods (NRs) as an anode for lithium-ion batt...
ConspectusLithium-ion batteries (LIBs) commercially dominate portable energy storage and have been e...
Lithium-ion batteries (LIBs) are receiving significant attention from both academia and industry as ...
The world-wide effort to produce and use cleaner energy also necessitates more advanced energy stora...
peer-reviewedWe report the use of assemblies of SnS nanocubes as lithium‐ion battery anodes. The par...
In the rechargeable lithium ion batteries, the rate capability and energy efficiency are largely gov...
Metal sulfides are a type of potential anode materials for lithium-ion batteries (LIBs). However, th...
Herein, for the first time, we study the reversible conversion in a lithium cell of a novel sulfur-m...
Tin disulfide is a promising anode material for Li-ion batteries (LIB) owing to its high theoretical...
Excellent reversibility is crucial for the storage capacity and the cycle life of anode materials in...
Nanostructured electrode materials have been studied extensively with the aim of enhancing lithium i...
The formation of lithium sulfides as discharge products imparts high specific energy density to lith...
Tin sulfide (SnS) has been regarded as one of the most attractive anode materials for lithium-ion ba...
Sulfide compounds are interesting conversion electrode materials for Li-ion batteries, due to their ...
Lithium-ion batteries are essential energy storage devices for modern-day technology and for creatin...
The electrochemical performance of tin sulfide (SnS) nanorods (NRs) as an anode for lithium-ion batt...
ConspectusLithium-ion batteries (LIBs) commercially dominate portable energy storage and have been e...
Lithium-ion batteries (LIBs) are receiving significant attention from both academia and industry as ...
The world-wide effort to produce and use cleaner energy also necessitates more advanced energy stora...
peer-reviewedWe report the use of assemblies of SnS nanocubes as lithium‐ion battery anodes. The par...
In the rechargeable lithium ion batteries, the rate capability and energy efficiency are largely gov...
Metal sulfides are a type of potential anode materials for lithium-ion batteries (LIBs). However, th...
Herein, for the first time, we study the reversible conversion in a lithium cell of a novel sulfur-m...
Tin disulfide is a promising anode material for Li-ion batteries (LIB) owing to its high theoretical...
Excellent reversibility is crucial for the storage capacity and the cycle life of anode materials in...
Nanostructured electrode materials have been studied extensively with the aim of enhancing lithium i...
The formation of lithium sulfides as discharge products imparts high specific energy density to lith...
Tin sulfide (SnS) has been regarded as one of the most attractive anode materials for lithium-ion ba...
Sulfide compounds are interesting conversion electrode materials for Li-ion batteries, due to their ...
Lithium-ion batteries are essential energy storage devices for modern-day technology and for creatin...
The electrochemical performance of tin sulfide (SnS) nanorods (NRs) as an anode for lithium-ion batt...