基本信息来源于合作网站,原文需代理用户跳转至来源网站获取       
摘要:
Li metal,possessing advantages of high theoretical specific capacity and low electrochemical potential,is regarded as the most promising anode material for next-generation batteries.However,despite decades of intensive research,its practical application is still hindered by safety hazard and low Coulombic efficiency,which is primarily caused by dendritic Li deposition.To address this issue,restraining dendrite growth at the nucleation stage is deemed as the most effective method.By utilizing the difference of electronegativity between boron atoms and carbon atoms,carbon atoms around boron atoms in boron-doped graphene (BG) turn into lithiophilic sites,which can enhance the adsorption capacity to Li+ at the nucleation stage.Consequently,an ultralow overpotential of 10 mV at a current density of 0.5 mA/cm2 and a high average Coulombic efficiency of 98.54% over more than 140 cycles with an areal capacity of 2 mAh/ cm2 at a current density of 1 mA/cm2 were achieved.BG-Li|LiFePO4 full cells delivered a long lifespan of 480 cycles at 0.5 C and excellent rate capability.This work provides a novel method for rational design of dendrite-free Li metal batteries by regulating nucleation process.
推荐文章
Boron isotope geochemistry of Zigetang Co saline lake sediments, Tibetan Plateau
Boron isotopes
Zigetang Co
Equilibrium isotopic fractionation
Boron concentration
The oceanic cycles of the transition metals and their isotopes
Ocean biogeochemistry
Metal micronutrients
Stable isotopes
基于GPU实现SlideShow中的effect和transition
图像处理器
Direct3D
SlideShow
固定功能流水线
可编程流水线
高级渲染语言
顶点渲染
像素渲染
MgH2- graphene复合储氢材料吸放氢性能
储氢材料
MgH2
石墨烯材料
吸放氢性能
内容分析
关键词云
关键词热度
相关文献总数  
(/次)
(/年)
文献信息
篇名 Boron-doping induced lithophilic transition of graphene for dendrite-free lithium growth
来源期刊 能源化学 学科
关键词
年,卷(期) 2021,(5) 所属期刊栏目
研究方向 页码范围 463-469
页数 7页 分类号
字数 语种 英文
DOI
五维指标
传播情况
(/次)
(/年)
引文网络
引文网络
二级参考文献  (0)
共引文献  (0)
参考文献  (1)
节点文献
引证文献  (0)
同被引文献  (0)
二级引证文献  (0)
2001(1)
  • 参考文献(1)
  • 二级参考文献(0)
2021(0)
  • 参考文献(0)
  • 二级参考文献(0)
  • 引证文献(0)
  • 二级引证文献(0)
引文网络交叉学科
相关学者/机构
期刊影响力
能源化学
双月刊
2095-4956
10-1287/O6
大连市中山路457号
eng
出版文献量(篇)
2804
总下载数(次)
0
总被引数(次)
7996
论文1v1指导