锑
化学工程
纳米晶
碳纤维
材料科学
化学
提高采收率
纳米技术
钠
无机化学
有机化学
复合数
工程类
复合材料
作者
Bin Qin,Henan Jia,Yifei Cai,Manni Li,Junlei Qi,Jian Cao,Jicai Feng
标识
DOI:10.1016/j.jcis.2020.08.050
摘要
Abstract Integrating carbon-coating and nanostructuring has been considered as the most promising strategy to accommodate the dramatic volume expansion represented by high-capacity antimony (Sb) upon sodiation. Suitable coating source and synthetic strategy that are both economical and strong are yet to be explored. In this regard, by using renewable bio-oil as carbon source and self-wrapping precursor, robust Sb@C composite anode with Sb nanoparticles homogeneously impregnated into the cross-linked 2D ultrathin carbon nanosheets is developed via a facile NaCl template-assisted self-assembly and followed carbothermal reduction method. Such judiciously crafted interconnected macroporous framework can mitigate of mechanical stress and alleviate the volume change of inner Sb, guaranteeing high-performance sodium-ion battery anode. At a current density of 0.1 A g−1, ultrahigh reversible capacity of 520 mAh g−1 can be achieved. Notably, a stable capacity of 391 mAh g−1 is even retained after 500 cycles at 1 A g−1. Such a facile and cost-effective synthetic method is promising for high-performance sodium-ion batteries.
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