Germanium is a highly promising anode material for lithium-ion batteries as a consequence of its large theoretical specific capacity, good electrical conductivity, and fast lithium ion diffusivity. In this work, Co<sub>3</sub>O<sub>4</sub> nanowire array fabricated on nickel foam was designed as a nanostructured current collector for Ge anode. By limiting the voltage cutoff window in an appropriate range, the obtained Ge anode exhibits excellent lithium storage performance in half- and full-cells, which can be mainly attributed to the designed nanostructured current collector with good conductivity, enough buffering space for the volume change, and shortened ionic transport length. More importantly, the assembled Ge/LiCoO<sub>2</sub> full-c...
A rapid synthetic protocol for the formation of high-performance Ge nanowire-based Li-ion battery an...
The ability to realize a highly capacitive/conductive electrode is an essential factor in large-scal...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2GeO3 as a...
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 high-performance and high-capacity lithium-ion battery anodes from h...
Ge nanowire electrodes fabricated by using vapor−liquid−solid growth on metallic current collector s...
The development and the characterization of a nanostructured binder-free anode for lithium-ion batt...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self-asse...
Herein, the electrochemical performance of directly grown Ge nanowire anodes in full-cell Li-ion con...
The electrochemical performance of Ge, an alloying anode in the form of directly grown nanowires (NW...
Rechargeable lithium-ion batteries are now attracting great attention for applications in portable e...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self‐asse...
Lithium ion batteries (LIBs) have been regarded as the most successfulelectrochemical power sources ...
This thesis describes the development of high-capacity, next generation Li-ion battery (LIB) electro...
A rapid synthetic protocol for the formation of high-performance Ge nanowire-based Li-ion battery an...
The ability to realize a highly capacitive/conductive electrode is an essential factor in large-scal...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2GeO3 as a...
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 high-performance and high-capacity lithium-ion battery anodes from h...
Ge nanowire electrodes fabricated by using vapor−liquid−solid growth on metallic current collector s...
The development and the characterization of a nanostructured binder-free anode for lithium-ion batt...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self-asse...
Herein, the electrochemical performance of directly grown Ge nanowire anodes in full-cell Li-ion con...
The electrochemical performance of Ge, an alloying anode in the form of directly grown nanowires (NW...
Rechargeable lithium-ion batteries are now attracting great attention for applications in portable e...
Simple and powerful: Two germanium/carbon nanostructures were synthesized through a facile self‐asse...
Lithium ion batteries (LIBs) have been regarded as the most successfulelectrochemical power sources ...
This thesis describes the development of high-capacity, next generation Li-ion battery (LIB) electro...
A rapid synthetic protocol for the formation of high-performance Ge nanowire-based Li-ion battery an...
The ability to realize a highly capacitive/conductive electrode is an essential factor in large-scal...
A simple, cost-effective, and easily scalable molten salt method for the preparation of Li2GeO3 as a...