A rapid synthetic protocol for the formation of high-performance Ge nanowire-based Li-ion battery anodes is reported. The nanowires are formed in high density by the solvent-free liquid deposition of a Ge precursor directly onto a heated stainless steel substrate under inert conditions. The novel growth system exploits the in situ formation of discrete Cu<sub>3</sub>Ge catalyst seeds from 1 nm thermally evaporated Cu layers. As the nanowires were grown from a suitable current collector, the electrodes could be used directly without binders in lithium-ion half cells. Electrochemical testing showed remarkable capacity retention with 866 mAh/g achieved after 1900 charge/discharge cycles and a Coulombic efficiency of 99.7%. The nanowire-based a...
Here we report the formation of high capacity Li-ion battery anodes from Si<sub>1–<i>x</i></sub>Ge<s...
The direct electrodeposition of crystalline germanium (Ge) nanowire film electrodes from an aqueous ...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
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...
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...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
peer-reviewedHere we report the formation of high-performance and high-capacity lithium-ion battery ...
peer-reviewedDeveloping a simple, cheap, and scalable synthetic method for the fabrication of functi...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Li-ion batteries are important energy storage devices today, powering a range of electrical equipmen...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
Nanowires are essential building blocks for many next generation devices. This includes applications...
Here we report the formation of high capacity Li-ion battery anodes from Si<sub>1–<i>x</i></sub>Ge<s...
The direct electrodeposition of crystalline germanium (Ge) nanowire film electrodes from an aqueous ...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...
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...
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...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
peer-reviewedHere we report the formation of high-performance and high-capacity lithium-ion battery ...
peer-reviewedDeveloping a simple, cheap, and scalable synthetic method for the fabrication of functi...
Here we report the formation of high-performance and high-capacity lithium-ion battery anodes from h...
Li-ion batteries are important energy storage devices today, powering a range of electrical equipmen...
Developing a simple, cheap, and scalable synthetic method for the fabrication of functional nanomate...
Nanowires are essential building blocks for many next generation devices. This includes applications...
Here we report the formation of high capacity Li-ion battery anodes from Si<sub>1–<i>x</i></sub>Ge<s...
The direct electrodeposition of crystalline germanium (Ge) nanowire film electrodes from an aqueous ...
Alloying anode materials (Si, Ge, Sn etc.) in lithium-ion batteries usually suffer from a remarkable...