Germanium-based materials as anode can improve the capacity of lithium-ion battery because of its excellent lithium-ion storage ability. But the application of Ge anode is hampered by the huge volume variation during de/lithiation processes. Herein, a Ge/Cu wire mesh (Ge/Cu-WM) electrode is prepared by ionic liquid electrodeposition, where the Ge nano-film is deposited on Cu wire mesh. The unique structure of Ge/Cu-WM electrode not only buffers the volume expansion but also enhances electron migration and electron transport during lithiation. The Cu3Ge is observed by XRD, which confirms that the Ge nano-film tightly attach to the Cu wires. All structural properties give the electrode excellent electrochemical performance, where a capacity o...
We present a single crystalline Ge nanowire anode material sheathed with carbon prepared by a solid-...
A Cu-supported, graphene nanoplatelet (GNP) electrodes are reported a as high performance anode in l...
Germanium holds great potential as an anode material for lithium ion batteries due to its high speci...
Germanium-based materials as anode can improve the capacity of lithium-ion battery because of its ex...
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
A rapid synthetic protocol for the formation of high-performance Ge nanowire-based Li-ion battery an...
This thesis describes the development of high-capacity, next generation Li-ion battery (LIB) electro...
Ge nanowire electrodes fabricated by using vapor−liquid−solid growth on metallic current collector s...
We demonstrate that dodecanethiol monolayer passivation can significantly enhance the anode performa...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...
Germanium (Ge) is a group IV semiconductor with superior electronic properties compared with silicon...
Germanium is a highly promising anode material for lithium-ion batteries as a consequence of its lar...
Herein, textured Cu foil is presented as an attractive current collector substrate for directly grow...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
The direct electrodeposition of crystalline germanium (Ge) nanowire film electrodes from an aqueous ...
We present a single crystalline Ge nanowire anode material sheathed with carbon prepared by a solid-...
A Cu-supported, graphene nanoplatelet (GNP) electrodes are reported a as high performance anode in l...
Germanium holds great potential as an anode material for lithium ion batteries due to its high speci...
Germanium-based materials as anode can improve the capacity of lithium-ion battery because of its ex...
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
A rapid synthetic protocol for the formation of high-performance Ge nanowire-based Li-ion battery an...
This thesis describes the development of high-capacity, next generation Li-ion battery (LIB) electro...
Ge nanowire electrodes fabricated by using vapor−liquid−solid growth on metallic current collector s...
We demonstrate that dodecanethiol monolayer passivation can significantly enhance the anode performa...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...
Germanium (Ge) is a group IV semiconductor with superior electronic properties compared with silicon...
Germanium is a highly promising anode material for lithium-ion batteries as a consequence of its lar...
Herein, textured Cu foil is presented as an attractive current collector substrate for directly grow...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
The direct electrodeposition of crystalline germanium (Ge) nanowire film electrodes from an aqueous ...
We present a single crystalline Ge nanowire anode material sheathed with carbon prepared by a solid-...
A Cu-supported, graphene nanoplatelet (GNP) electrodes are reported a as high performance anode in l...
Germanium holds great potential as an anode material for lithium ion batteries due to its high speci...