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A high areal capacity sodium-ion battery anode enabled by a free-standing red phosphorus@N-doped graphene/CNTs aerogel.

Yi SunQiujie WuKuanxin ZhangYongchao LiuXin LiangHongfa Xiang
Published in: Chemical communications (Cambridge, England) (2022)
A novel and facile strategy for fabricating red phosphorus@nitrogen doped graphene/carbon nanotube aerogel (P@NGCA) is proposed as a free-standing anode for high energy sodium-ion batteries. Owing to an optimized structure of red P uniformly confined in porous NGCA with high conductivity and mechanical stability, the free-standing P@NGCA anode exhibits outstanding sodium storage performance with a high areal capacity of 3.3 mA h cm -2 and superior initial Coulombic efficiency of 80%.
Keyphrases
  • ion batteries
  • reduced graphene oxide
  • carbon nanotubes
  • gold nanoparticles
  • quantum dots
  • highly efficient
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  • room temperature
  • risk assessment
  • ionic liquid
  • visible light