Germanium is an outstanding anode material in terms of electrochemical performance, especially rate capability, but its developments are hindered by its high price because it is rare in the crust of earth, and its huge volume variation during the lithium insertion and extraction. Introducing other cheaper elements into the germanium-based material is an efficient way to dilute the high price, but normally sacrifice its electrochemical performance. By the combination of nanostructure design and cheap element (calcium) introduction, urchin-like Ca2Ge7O16 hierarchical hollow microspheres have been successfully developed in order to reduce the price and maintain the good electrochemical properties of germanium-based material. The electrochemica...
Hollow carbon spheres with encapsulated germanium as an anode material for lithium ion batterie
Various forms of germanium and germanium-containing compounds and materials are actively investigate...
Generally, Ge-based anodes are prepared by metallothermic reduction of GeO<sub>2</sub> with Mg at 65...
Germanium is an outstanding anode material in terms of electrochemical performance, especially rate ...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2GeO3 as a...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2 GeO3 as ...
A novel composite consisting of hollow carbon spheres with encapsulated germanium (Ge@HCS) was synth...
Germanium has been investigated intensively for its high specific capacity and tough nature, which m...
Germanium-based materials are arousing increasing interest as anodes for lithium-ion batteries, stem...
Here we report the formation of novel asymmetric membrane electrode containing micron-size (∼5 μm) g...
Lithium ion batteries (LIBs) have been regarded as the most successfulelectrochemical power sources ...
In this work, we synthesize mesoporous and hollow germanium@carbon nanostructures through simultaneo...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self-asse...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self‐asse...
Germanium-based materials are arousing increasing interest as anodes for lithium-ion batteries, stem...
Hollow carbon spheres with encapsulated germanium as an anode material for lithium ion batterie
Various forms of germanium and germanium-containing compounds and materials are actively investigate...
Generally, Ge-based anodes are prepared by metallothermic reduction of GeO<sub>2</sub> with Mg at 65...
Germanium is an outstanding anode material in terms of electrochemical performance, especially rate ...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2GeO3 as a...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2 GeO3 as ...
A novel composite consisting of hollow carbon spheres with encapsulated germanium (Ge@HCS) was synth...
Germanium has been investigated intensively for its high specific capacity and tough nature, which m...
Germanium-based materials are arousing increasing interest as anodes for lithium-ion batteries, stem...
Here we report the formation of novel asymmetric membrane electrode containing micron-size (∼5 μm) g...
Lithium ion batteries (LIBs) have been regarded as the most successfulelectrochemical power sources ...
In this work, we synthesize mesoporous and hollow germanium@carbon nanostructures through simultaneo...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self-asse...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self‐asse...
Germanium-based materials are arousing increasing interest as anodes for lithium-ion batteries, stem...
Hollow carbon spheres with encapsulated germanium as an anode material for lithium ion batterie
Various forms of germanium and germanium-containing compounds and materials are actively investigate...
Generally, Ge-based anodes are prepared by metallothermic reduction of GeO<sub>2</sub> with Mg at 65...