Branched Sn78Ge22@carbon core-shell nanowires were prepared by thermal annealing of butyl-capped Sn78Ge22 clusters at 600??C in a vacuum. The first discharge and charge capacities are 1250 and 1107 mA h/g, showing a Coulombic efficiency of 88%. Such a one-dimensional core-shell design exploits the benefits of the Sn 78Ge22 nanowire to produce an exceptional high rate lithium reactivity (93% Coulombic efficiency at 8C (=6400 mA/g) rate) as well as excellent capacity retention after extended cycles (capacity retention of 94%).close697
© 2020 Wiley-VCH GmbH Among the various semiconductor materials, zinc telluride possesses the lowest...
For large-scale energy storage devices, lithium-ion batteries (LIBs) are leading candidates for appl...
Despite the many efforts to solve the problem associated with lithium storage at high rates, it is r...
Sn0.9Si0.1 core/carbon shell nanoparticles, with the sizes of 16 and 10 nm, were prepared by anneali...
Metallic Sn has high conductivity and high theoretical capacity for lithium storage but it suffers f...
Mesoporous Si@carbon core-shell nanowires with a diameter of ???6.5 nm were prepared for a lithium b...
This paper describes the synthesis and electrochemical characterization of Sn70Ge30@carbon core-shel...
This paper describes the synthesis and electrochemical characterization of Sn70Ge30@carbon core-shel...
We introduce a novel design of carbon-silicon core-shell nanowires for high power and long life lith...
Mesoporous Si@carbon core-shell nanowires with a diameter of similar to 6.5 nm were prepared for a l...
As one promising anode material with high theoretical capacity, metallic tin has attracted much rese...
A yolk–shell Sn@C nanobox composite with controllable structures has been synthesized using a facile...
Robust and fast lithium energy storage with a high energy density is highly desired to accelerate th...
One of the greatest challenges in next-generation Li-ion batteries (LIB) is to develop high charge c...
Ultralong germanium nanotubes (Ge NTs; see picture) are synthesized in high yield from core-shell Ge...
© 2020 Wiley-VCH GmbH Among the various semiconductor materials, zinc telluride possesses the lowest...
For large-scale energy storage devices, lithium-ion batteries (LIBs) are leading candidates for appl...
Despite the many efforts to solve the problem associated with lithium storage at high rates, it is r...
Sn0.9Si0.1 core/carbon shell nanoparticles, with the sizes of 16 and 10 nm, were prepared by anneali...
Metallic Sn has high conductivity and high theoretical capacity for lithium storage but it suffers f...
Mesoporous Si@carbon core-shell nanowires with a diameter of ???6.5 nm were prepared for a lithium b...
This paper describes the synthesis and electrochemical characterization of Sn70Ge30@carbon core-shel...
This paper describes the synthesis and electrochemical characterization of Sn70Ge30@carbon core-shel...
We introduce a novel design of carbon-silicon core-shell nanowires for high power and long life lith...
Mesoporous Si@carbon core-shell nanowires with a diameter of similar to 6.5 nm were prepared for a l...
As one promising anode material with high theoretical capacity, metallic tin has attracted much rese...
A yolk–shell Sn@C nanobox composite with controllable structures has been synthesized using a facile...
Robust and fast lithium energy storage with a high energy density is highly desired to accelerate th...
One of the greatest challenges in next-generation Li-ion batteries (LIB) is to develop high charge c...
Ultralong germanium nanotubes (Ge NTs; see picture) are synthesized in high yield from core-shell Ge...
© 2020 Wiley-VCH GmbH Among the various semiconductor materials, zinc telluride possesses the lowest...
For large-scale energy storage devices, lithium-ion batteries (LIBs) are leading candidates for appl...
Despite the many efforts to solve the problem associated with lithium storage at high rates, it is r...