High rate, high temperature, dendrite free plating/stripping of Li in 3-dimensional honeycomb boron carbon nitride to realize an ultrastable lithium metal anode

被引:7
作者
Patrike, Apurva [1 ,2 ]
Karbhal, Indrapal [1 ,2 ]
Wasnik, Kundan [1 ,2 ]
Torris, Arun [3 ]
Maibam, Ashakiran [1 ,2 ,4 ]
Krishnamurty, Sailaja [1 ,2 ]
Shelke, Manjusha, V [1 ,2 ,5 ]
机构
[1] CSIR Natl Chem Lab, Phys & Mat Chem Div, Pune 411008, Maharashtra, India
[2] Acad Sci & Innovat Res AcSIR, Ghaziabad 201002, Uttar Pradesh, India
[3] CSIR Natl Chem Lab, Polymer Sci & Engn Div, Pune 411008, Maharashtra, India
[4] RMIT Univ, Sch Sci, Melbourne, Vic 3001, Australia
[5] Purdue Univ, Davidson Sch Chem Engn, W Lafayette, IN 47907 USA
关键词
Dendrite-free Li metal anode; Boron carbon nitride; Functional scaffold; High temperature plating/stripping of Li; X-ray micro-tomography; Molecular planarity parameter; EFFICIENT; GRAPHENE; DEPOSITION; BATTERIES; HOST; ION; NUCLEATION; CAPACITY; FILMS;
D O I
10.1016/j.est.2023.107547
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Lithium (Li) metal could be the anode of choice for energy dense Li-batteries owing to its high theoretical specific capacity. However, low coulombic efficiency and poor safety on account of the occurrence of the Li-dendrites during charging-discharging pose a bottleneck for practical applications. In this work, we report a high-rate plating and stripping of Li through host engineering to realize ultrastable Li metal anode (LMA). Benchmark plating/stripping efficiency could be achieved via uniquely structured, highly ordered honeycomb boron carbon nitride (HBCN) as a functional scaffold. Boron and nitrogen doping, large surface area and ordered mesoporous structure induce homogeneous solid electrolyte interface (SEI) layer formation and provide numerous nucleation sites with subsequent dendrite-free growth with 99.98 % coulombic efficiency at 8 mA cm(-2) high current and 10 mAh cm(-2) capacity over 3000 cycles. Via post-cycling advanced characterizations techniques of Ex-situ XPS, 3D X-ray micro-tomography analyses and FESEM, we demonstrate the formation of a stable SEI layer and morphological changes that occurred during Li plating cycles in the HBCN structure. Computational studies validate the high lithium plating-stripping efficacy of HBCN to its highly ordered porous nature, exothermic Li-binding and upshift in the Fermi levels. When tested at elevated temperature (50 degrees C), a stable Li plating-stripping in HBCN is realised at 4 mA cm(-2) current and 10 mAh cm(-2) capacity values with similar to 100 % C.E. Furthermore, we report the results of testing a Li metal cell comprised of Li deposited HBCN anode and LiFePO4 (LFP) cathode.
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页数:12
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