Innovative design of dual functional polypyrrole-coated zinc cobalt sulfide nanosheets on carbon cloth as a binder-free anode of sodium-ion batteries

被引:2
|
作者
Xiao, Cheng-Yu [1 ]
Kubendhiran, Subbiramaniyan [1 ]
Wang, Guan-Bo [3 ]
Kongvarhodom, Chutima [2 ,8 ]
Chen, Hung-Ming [4 ]
Yougbare, Sibidou [5 ]
Saukani, Muhammad [6 ]
Wu, Yung-Fu [7 ]
Lin, Lu-Yin [1 ]
机构
[1] Natl Taipei Univ Technol, Dept Chem Engn & Biotechnol, Taipei, Taiwan
[2] King Mongkuts Univ Technol Thonburi, Dept Chem Engn, 126 Pracha U Thit, Bangkok 10140, Thailand
[3] Natl Taiwan Univ, Dept Chem, Taipei, Taiwan
[4] Gingen technol Co LTD, Rm 7,10F,189,Sec 2,Keelung Rd, Taipei 11054, Taiwan
[5] Inst Rech en Sci St e IRSS DRCO Nanoro, 03 BP 7192, Ouagadougou 03, Burkina Faso
[6] Univ Islam Kalimantan MAB, Fac Engn, Dept Mech Engn, Jl Adhyaksa 2, Banjarmasin 70124, Indonesia
[7] Ming Chi Univ Technol, Dept Chem Engn, New Taipei 24301, Taiwan
[8] Univ New Brunswick, Dept Chem Engn, Fredericton, NB, Canada
关键词
Areal capacity; Long-term stability; Polypyrrole; Sodium-ion battery; Volume expansion; Zinc cobalt sulfide; GRAPHENE OXIDE COMPOSITE; SUPERIOR RATE CAPABILITY; PERFORMANCE; STORAGE; LI; STABILITY; ELECTRODE; HYBRID; FOAMS;
D O I
10.1016/j.est.2024.112012
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
Sodium-ion battery (SIB) is attractive and cost-effective for energy storage due to the high abundance of sodium. Anodes with complex electrochemical mechanisms significantly impact the performance and safety of battery systems. In recent times, cobalt-based binary metal sulfides have received enormous attention in energy storage applications. However, high volume expansion, limited cycle life, and low initial Coulombic efficiency are major problems of SIB in a practical application perspective. Herein, a novel binder-free electrode is designed by synthesizing polypyrrole-coated zinc cobalt sulfide nanosheets on carbon cloth (PPy/ZnCoS@CC) as the anode of SIB via a hydrothermal process for the first time. The PPy coating on the ZnCoS surface is to control the volume expansion and solve the long-term stability issue. The thickness of PPy on ZnCoS is controlled by using different polymerization reaction times. The optimal PPy/ZnCoS@CC electrode demonstrates a high areal capacity of 2.33 mAh/cm2 at 0.1 mA/cm2 and retains 75% of the areal capacity after 100 cycles. The galvanic intermittent titration technique analysis is also used to measure the diffusion coefficient of anodes. This work brings a blueprint on enhancing the conducing property and control the volume expansion during the charge-discharge process by coating conductive polymer on metallic compounds.
引用
收藏
页数:9
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