Silicon is essential as an active material in lithium-ion batteries because it provides both high-charge and optimal cycle characteristics. The authors attempted to realize a composite by a simple mechanochemical grinding approach of individual silicon (Si) particles and copper monoxide (CuO) particles to serve as an active material in the anode and optimize the charge-discharge characteristics of a lithium-ion battery. The composite with Si and CuO allowed for a homogenous dispersion with nano-scale Si grains, nano-scale copper-silicon alloy grains and silicon monoxide oxidized the oxide from CuO. The authors successfully achieved the synthesis of an active composite unites the structural features of an active material based on silicon com...
Silicon is a promising anode material for Li-ion batteries in regarding of high capacity, low cost a...
A new anode composite material is prepared by thermal treatment of a blend made of silicon monoxide ...
Silicon, being the second most abundant element on the earth’s crust with the theoretical specific c...
Si is essential as an active material in Li-ion batteries because it provides both high charge and o...
Composite consisting of nanosized silicon, Li4SiO4 and other lithium-rich components was synthesized...
Two different anode composite materials comprising of Fe, Cu and Si prepared using high energy ball ...
Two different anode composite materials comprising of Fe, Cu and Si prepared using high energy ball ...
Silicon and related materials have recently received considerable attention as potential anodes in L...
A Si-based anode maintaining its high electrochemical performance with cycles was prepared for the n...
The fast capacity fading of Si-based anodes significantly limits the application in Li-ion battery (...
Studies on the Si based lithium-ion battery anode with long cyclic life and reasonable mass loading ...
High effort is currently being put into the capacity increase of lithium-ion batteries. Silicon is o...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
Silicon is one of the most promising anode material for lithium ion batteries in the future, since i...
We investigate the anode performance of Si-based nanorods by tuning its composition using an oblique...
Silicon is a promising anode material for Li-ion batteries in regarding of high capacity, low cost a...
A new anode composite material is prepared by thermal treatment of a blend made of silicon monoxide ...
Silicon, being the second most abundant element on the earth’s crust with the theoretical specific c...
Si is essential as an active material in Li-ion batteries because it provides both high charge and o...
Composite consisting of nanosized silicon, Li4SiO4 and other lithium-rich components was synthesized...
Two different anode composite materials comprising of Fe, Cu and Si prepared using high energy ball ...
Two different anode composite materials comprising of Fe, Cu and Si prepared using high energy ball ...
Silicon and related materials have recently received considerable attention as potential anodes in L...
A Si-based anode maintaining its high electrochemical performance with cycles was prepared for the n...
The fast capacity fading of Si-based anodes significantly limits the application in Li-ion battery (...
Studies on the Si based lithium-ion battery anode with long cyclic life and reasonable mass loading ...
High effort is currently being put into the capacity increase of lithium-ion batteries. Silicon is o...
We report a simple route for synthesizing multi-dimensional structured silicon anode materials from ...
Silicon is one of the most promising anode material for lithium ion batteries in the future, since i...
We investigate the anode performance of Si-based nanorods by tuning its composition using an oblique...
Silicon is a promising anode material for Li-ion batteries in regarding of high capacity, low cost a...
A new anode composite material is prepared by thermal treatment of a blend made of silicon monoxide ...
Silicon, being the second most abundant element on the earth’s crust with the theoretical specific c...