Separator Modified by Carbon-Encapsulated CoFe Alloy Nanoparticles Supported on Carbon Nanotubes for Advanced Lithium-Sulfur Batteries

被引:19
|
作者
Shang, Junpeng [1 ]
Ma, Chao [1 ]
Zhang, Cuijuan [1 ]
Zhang, Wenwen [1 ]
Shen, Baoguo [2 ]
Wang, Fenghua [2 ,3 ]
Guo, Shun [1 ]
Yao, Shanshan [1 ]
机构
[1] Jiangsu Univ, Inst Adv Mat, Coll Mat Sci & Engn, Zhenjiang 212013, Peoples R China
[2] Jiangsu Aviat Tech Coll, Inst Zhenjiang Key Lab UVA Applicat Technol, Zhenjiang 212134, Peoples R China
[3] Changzhou EGing Photovolta Technol Co Ltd, Changzhou 213200, Peoples R China
基金
中国国家自然科学基金;
关键词
lithium-sulfur batteries; modifiedseparator; polysulfides; redox reaction; NC@CoFe/CNT hybridcomposite; HIGH-PERFORMANCE; POLYSULFIDE CONVERSION; NANOFIBERS; HYBRID; ELECTRODES; INTERLAYER; CATALYSIS; MEMBRANE; NANORODS;
D O I
10.1021/acsanm.3c04974
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The commercialization of lithium-sulfur (Li-S) batteries still confronts great challenges due to the sluggish redox kinetics of sulfur and the shuttle effect of lithium polysulfides. Designing a highly active electrocatalyst is an effective strategy to address the problems caused by complex multistep reactions. Herein, a hybrid composite composed of nitrogen-doped carbon-wrapped bimetallic cobalt-iron alloy nanoparticles (NC@CoFe) is derived from a Prussian blue analogue and multiwalled carbon nanotubes (CNTs), which is used as a functional coating on a separator for Li-S batteries. The cross-linked CNTs provide a robust and conductive network for quick charge transfer and sufficient active-site exposure, and the NC@CoFe nanoparticles demonstrate a strong ability for anchoring and catalytic conversion of lithium polysulfides. The specific discharge capacity of the cell with the NC@CoFe/CNT-modified separator can reach 865.4 mA h/g at 3.18 mA/cm(2) (0.5 C) and is 576.3 mA h/g after 300 cycles with a Coulombic efficiency of approximately 98.2%. The cells with a 7.4 mg/cm(2) sulfur loading display a remarkable capacity retention of 77.8% after 100 cycles. The electrocatalyst with functionalized carbonaceous adsorption and alloy nanoparticle catalysis holds substantial promise for advancing the commercialization of durable Li-S batteries.
引用
收藏
页码:1786 / 1796
页数:11
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