We present a single crystalline Ge nanowire anode material sheathed with carbon prepared by a solid-liquid solution method. The composite electrode composed of Ge nanowires shows impressive electrochemical properties, exhibiting a very high reversible charge capacity (after lithium removal) of 963 mA h g(-1) with a coulombic efficiency of 91%.close11810
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
While active materials based on germanium (Ge) are considered as a promising alternative anodic elec...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
peer-reviewedDeveloping a simple, cheap, and scalable synthetic method for the fabrication of functi...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
Ge nanowire electrodes fabricated by using vapor−liquid−solid growth on metallic current collector s...
Germanium-based materials (Ge and GeO<sub><i>x</i></sub>) have recently demonstrated excellent lithi...
peer-reviewedHere we report the formation of high-performance and high-capacity lithium-ion battery ...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
We demonstrate that dodecanethiol monolayer passivation can significantly enhance the anode performa...
peer-reviewedThe combination of two active Li-ion materials (Ge and Sn) can result in improved condu...
We demonstrate that dodecanethiol monolayer passivation can significantly enhance the anode performa...
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
While active materials based on germanium (Ge) are considered as a promising alternative anodic elec...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
peer-reviewedDeveloping a simple, cheap, and scalable synthetic method for the fabrication of functi...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
Ge nanowire electrodes fabricated by using vapor−liquid−solid growth on metallic current collector s...
Germanium-based materials (Ge and GeO<sub><i>x</i></sub>) have recently demonstrated excellent lithi...
peer-reviewedHere we report the formation of high-performance and high-capacity lithium-ion battery ...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
We demonstrate that dodecanethiol monolayer passivation can significantly enhance the anode performa...
peer-reviewedThe combination of two active Li-ion materials (Ge and Sn) can result in improved condu...
We demonstrate that dodecanethiol monolayer passivation can significantly enhance the anode performa...
bS Supporting Information Development of advanced lithium ion batteries (LIBs) re-quires new electro...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
While active materials based on germanium (Ge) are considered as a promising alternative anodic elec...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...