Germanium holds great potential as an anode material for lithium ion batteries due to its high specific capacity and its favorable properties such as good lithium ion diffusivity and electronic conductivity. However, the high cost of germanium and large volume changes during cycling, which lead to a rapid capacity fading for bulk Ge materials, demand for nanostructured thin film devices. Herein we report the preparation and electrochemical properties of thin films of porous, inverse opal structured Ge anodes obtained via a simple, up-scalable wet-chemical route utilizing [Ge9]4− Zintl ions. In the absence of conductive additives, they show high initial capacities of >1300 mA h g−1 and promisingly high coulombic efficiencies of up to 99.3% a...
Here we report the formation of novel asymmetric membrane electrode containing micron-size (∼5 μm) g...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...
Germanium-based materials as anode can improve the capacity of lithium-ion battery because of its ex...
Germanium holds great potential as an anode material for lithium ion batteries due to its large theo...
In this work we have presented the results of our novel binder free anodic material made of porous G...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Porous structured materials have unique architectu...
The development and the characterization of a nanostructured binder-free anode for lithium-ion batte...
In this short review, we overview some advancements made in Li-ion battery anode development, where ...
In this work, the preparation of novel macroporous germanium (p-Ge) and its electrochemical characte...
We demonstrate a new class of synthetic process for three-dimensional porous Ge materials (3D-pGe). ...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2 GeO3 as ...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2GeO3 as a...
Germanium nanocrystals (12 nm mean diam) and amorphous thin films (60-250 nm thick) were prepared as...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Here we report the formation of novel asymmetric membrane electrode containing micron-size (∼5 μm) g...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...
Germanium-based materials as anode can improve the capacity of lithium-ion battery because of its ex...
Germanium holds great potential as an anode material for lithium ion batteries due to its large theo...
In this work we have presented the results of our novel binder free anodic material made of porous G...
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Porous structured materials have unique architectu...
The development and the characterization of a nanostructured binder-free anode for lithium-ion batte...
In this short review, we overview some advancements made in Li-ion battery anode development, where ...
In this work, the preparation of novel macroporous germanium (p-Ge) and its electrochemical characte...
We demonstrate a new class of synthetic process for three-dimensional porous Ge materials (3D-pGe). ...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2 GeO3 as ...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2GeO3 as a...
Germanium nanocrystals (12 nm mean diam) and amorphous thin films (60-250 nm thick) were prepared as...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Here we report the formation of novel asymmetric membrane electrode containing micron-size (∼5 μm) g...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...
Germanium-based materials as anode can improve the capacity of lithium-ion battery because of its ex...