One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dramatic volume change during lithiation/delithiation process, which causes a rapid capacity fading and then deteriorated battery performance. To address this issue, herein, we report the design and fabrication of Sn encapsulated carbon nanoboxes (denoted as Sn@C) with yolk@shell architectures. In this design, the carbon shell can facilitate the good transport kinetics whereas the hollow space between Sn and carbon shell can accommodate the volume variation during repeated charge/discharge process. Accordingly, this composite electrode exhibits a high reversible capacity of 675 mAh g−1 at a current density of 0.8 A g−1 after 500 cycles and prese...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
Co–Sn solid-solution nanoparticles with Sn crystal structure and tuned metal ratios were synthesized...
All high‐capacity anodes for lithium‐ion (Li‐ion) batteries, such as those based on tin (Sn) and sil...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
A yolk–shell Sn@C nanobox composite with controllable structures has been synthesized using a facile...
Metallic Sn has high conductivity and high theoretical capacity for lithium storage but it suffers f...
Tin (Sn)-based materials are potential alternatives to the commercial graphite anode for next genera...
To address the huge volumetric change and unstable solid electrolyte interphase (SEI) issues of Sn-b...
International audienceHerein, we report a systematic study on the understanding of the influence of ...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
2020 American Chemical Society. Tin-based composites hold promise as anodes for high-capacity lithiu...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
Co–Sn solid-solution nanoparticles with Sn crystal structure and tuned metal ratios were synthesized...
All high‐capacity anodes for lithium‐ion (Li‐ion) batteries, such as those based on tin (Sn) and sil...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
One of the crucial challenges for applying Sn as an anode of lithium-ion batteries (LIBs) is the dra...
A yolk–shell Sn@C nanobox composite with controllable structures has been synthesized using a facile...
Metallic Sn has high conductivity and high theoretical capacity for lithium storage but it suffers f...
Tin (Sn)-based materials are potential alternatives to the commercial graphite anode for next genera...
To address the huge volumetric change and unstable solid electrolyte interphase (SEI) issues of Sn-b...
International audienceHerein, we report a systematic study on the understanding of the influence of ...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
Nanosize tin particles (Sn-PMCMT) embedded in electrically conducting porous multichannel carbon mic...
A novel anode material for lithium-ion batteries, tin nanoparticles coated with carbon embedded in g...
2020 American Chemical Society. Tin-based composites hold promise as anodes for high-capacity lithiu...
In this Letter, we reported on the preparation and Li-ion battery anode application of ultrasmall Sn...
Co–Sn solid-solution nanoparticles with Sn crystal structure and tuned metal ratios were synthesized...
All high‐capacity anodes for lithium‐ion (Li‐ion) batteries, such as those based on tin (Sn) and sil...