Unlocking the potential of ultra-thin two-dimensional antimony materials: Selective growth and carbon coating for efficient potassium-ion storage

被引:0
|
作者
Dongyu Zhang [1 ,2 ]
Zhaomin Wang [1 ]
Yabin Shen [1 ,2 ]
Yeguo Zou [1 ,2 ]
Chunli Wang [1 ]
Limin Wang [1 ,2 ]
Yong Cheng [1 ]
机构
[1] State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences(CAS)
[2] School of Applied Chemistry and Engineering, University of Science and Technology of China
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TM912 [蓄电池]; TG146.18 [];
学科分类号
摘要
Antimony-based anodes have attracted wide attention in potassium-ion batteries due to their high theoretical specific capacities(~660 mA h g-1) and suitable voltage platforms. However, severe capacity fading caused by huge volume change and limited ion transportation hinders their practical applications.Recently, strategies for controlling the morphologies of Sb-based materials to improve the electrochemical performances have been proposed. Among these, the two-dimensional Sb(2D-Sb) materials present excellent properties due to shorted ion immigration paths and enhanced ion diffusion. Nevertheless, the synthetic methods are usually tedious, and even the mechanism of these strategies remains elusive, especially how to obtain large-scale 2D-Sb materials. Herein, a novel strategy to synthesize 2D-Sb material using a straightforward solvothermal method without the requirement of a complex nanostructure design is provided. This method leverages the selective adsorption of aldehyde groups in furfural to induce crystal growth, while concurrently reducing and coating a nitrogen-doped carbon layer.Compared to the reported methods, it is simpler, more efficient, and conducive to the production of composite nanosheets with uniform thickness(3–4 nm). The 2D-Sb@NC nanosheet anode delivers an extremely high capacity of 504.5 mA h g-1at current densities of 100 mA g-1and remains stable for more than 200 cycles. Through characterizations and molecular dynamic simulations, how potassium storage kinetics between 2D Sb-based materials and bulk Sb-based materials are explored, and detailed explanations are provided. These findings offer novel insights into the development of durable 2D alloy-based anodes for next-generation potassium-ion batteries.
引用
收藏
页码:440 / 449
页数:10
相关论文
共 30 条
  • [1] Unlocking the potential of ultra-thin two-dimensional antimony materials: Selective growth and carbon coating for efficient potassium-ion storage
    Zhang, Dongyu
    Wang, Zhaomin
    Shen, Yabin
    Zou, Yeguo
    Wang, Chunli
    Wang, Limin
    Cheng, Yong
    JOURNAL OF ENERGY CHEMISTRY, 2024, 92 : 440 - 449
  • [2] Perspectives on two-dimensional ultra-thin materials in energy catalysis and storage
    Wang, Chengming
    Guan, Shuyan
    Zhang, Huanhuan
    Shen, Ruofan
    Yuan, Huiyu
    Li, Baojun
    APL MATERIALS, 2023, 11 (05)
  • [3] KxCy phase induced expanded interlayer in ultra-thin carbon toward full potassium-ion capacitors
    Deng, Xinglan
    Tian, Ye
    Zou, Kangyu
    Chen, Jun
    Xiao, Xuhuan
    Tao, Shusheng
    Song, Zirui
    Deng, Wentao
    Hou, Hongshuai
    Zou, Guoqiang
    Ji, Xiaobo
    CARBON ENERGY, 2022, 4 (06) : 1151 - 1168
  • [4] Two-dimensional monoelement nanosheets produced from bulk crystals for potassium-ion storage
    Luo, Wen
    Ru, Fei
    Yu, Dandan
    Liu, Hongjie
    Gao, Weiwei
    Song, Wenlong
    Chen, Da
    CHEMICAL PHYSICS LETTERS, 2023, 830
  • [5] Ultra-Thin Wrinkled Carbon Sheet as an Anode Material of High-Power-Density Potassium-Ion Batteries
    Cheng, Boshi
    Li, Xing
    Pan, Linhai
    Xu, Hongqiang
    Duan, Haojie
    Wu, Qian
    Yin, Bo
    He, Haiyong
    MOLECULES, 2022, 27 (09):
  • [6] A versatile opened hollow carbon sphere with highly loaded antimony alloy for ultra-stable potassium-ion storage
    Wang, Deping
    Ma, Zechao
    Yuan, Yifei
    Bao, Chenguang
    Gao, Yingxv
    Xia, Xiaohong
    Liu, Hongbo
    CARBON, 2024, 230
  • [7] Surface modification and in situ carbon intercalation of two-dimensional niobium carbide as promising electrode materials for potassium-ion batteries
    Liu, Cong
    Zhou, Jinhua
    Li, Xiaoge
    Fang, Zhitang
    Sun, Rui
    Yang, Gang
    Hou, Wenhua
    Chemical Engineering Journal, 2022, 431
  • [8] Surface modification and in situ carbon intercalation of two-dimensional niobium carbide as promising electrode materials for potassium-ion batteries
    Liu, Cong
    Zhou, Jinhua
    Li, Xiaoge
    Fang, Zhitang
    Sun, Rui
    Yang, Gang
    Hou, Wenhua
    CHEMICAL ENGINEERING JOURNAL, 2022, 431
  • [9] Thgraphene: a novel two-dimensional carbon allotrope as a potential multifunctional material for electrochemical water splitting and potassium-ion batteries
    Wang, Weiyi
    Meng, Jie
    Hu, Yujie
    Wang, Jiajun
    Li, Qunxiang
    Yang, Jinlong
    JOURNAL OF MATERIALS CHEMISTRY A, 2022, 10 (18) : 9848 - 9857
  • [10] Two-Dimensional Molecular Brush-Based Ultrahigh Edge-Nitrogen-Doped Carbon Nanosheets for Ultrafast Potassium-Ion Storage
    Cen, Zongheng
    Tang, Youchen
    Huang, Junlong
    Chen, Yongqi
    Yang, Haozhen
    Miao, Dongtian
    Wu, Dingcai
    Liu, Shaohong
    BATTERIES-BASEL, 2023, 9 (07):