Planar Deposition via In Situ Conversion Engineering for Dendrite-Free Zinc Batteries

被引:0
|
作者
Zhang, Hanning [1 ]
You, Yurong [1 ]
Sha, Dawei [2 ]
Shui, Tao [1 ]
Moloto, Nosipho [3 ]
Liu, Jiacheng [4 ]
Kure-Chu, Song-Zhu [4 ]
Hihara, Takehiko [4 ]
Zhang, Wei [1 ]
Sun, ZhengMing [1 ]
机构
[1] Southeast Univ, Sch Mat Sci & Engn, Nanjing 211189, Peoples R China
[2] Yangzhou Univ, Sch Environm Sci & Engn, Yangzhou 225009, Peoples R China
[3] Univ Witwatersrand, Mol Sci Inst, Sch Chem, Private Bag 3, ZA-2050 Johannesburg, South Africa
[4] Nagoya Inst Technol, Dept Mat Funct & Design, Gokiso Cho,Showa Ku, Nagoya, Aichi 4668555, Japan
基金
中国国家自然科学基金;
关键词
anode-free zinc batteries; in situ conversion; lattice matching; planar deposition; ANODE;
D O I
10.1002/adma.202409763
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Owing to the considerable capacity, high safety, and abundant zinc resources, zinc-ion batteries (ZIBs) have been garnering much attention. Nonetheless, the unsatisfactory cyclic lifespan and poor reversibility originate from side reactions and dendrite obstacles to their practical applications. In addition to inhibiting the corrosion of aqueous electrolytes, regulating planar deposition is a key strategy to enhance their long-term stability. Herein, an in situ conversion strategy is reported to construct a protective "dual-layer" structure (VZSe/V@Zn) on zinc metal, consisting of the VSe2-ZnSe outer layer with low lattice mismatch to Zn (002) plane, and corrosion-resistant nanometallic V inner layer. Such design integrates superior interfacial ionic/electronic transfer, corrosion resistance, and unique planar deposition regulation capability. The as-prepared VZSe/V@Zn demonstrates remarkable durability of 238 h at 50 mA cm-2 with a high depth of discharge (68.3% DOD) in the Zn||Zn symmetric cell. Even in the anode-free system, the as-prepared protective layer can extend the cycle life up to 2000 cycles, with an outstanding capacity retention of 93.1% and ultra-high average coulombic efficiency of 99.998%. This work delineates an effective strategy for fabricating lattice-matching protective layers, with profound implications for elucidating zinc deposition mechanisms and paving the way for the development of high-performance zinc batteries. A "dual-layer" coating is fabricated via an in situ conversion strategy, consisting of a VSe2/ZnSe outer layer with low lattice mismatch and a nano metallic V inner layer with corrosion resistance. This design not only facilitates interfacial ion transfer and electric field homogenization but also enables planar deposition, thereby achieving reversible and uniform zinc deposition. image
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Understanding and Mastering Multiphysical Fields Toward Dendrite-Free Aqueous Zinc Batteries
    Du, Dayue
    Zeng, Li
    Lan, Nan
    Luo, Dan
    Li, Xiaolong
    He, Hanna
    Zhang, Chuhong
    ADVANCED ENERGY MATERIALS, 2024, 14 (47)
  • [32] Sodium Deposition with a Controlled Location and Orientation for Dendrite-Free Sodium Metal Batteries
    Xu, Ying
    Wang, Chuanlong
    Matios, Edward
    Luo, Jianmin
    Hu, Xiaofei
    Yue, Qin
    Kang, Yijin
    Li, Weiyang
    ADVANCED ENERGY MATERIALS, 2020, 10 (44)
  • [33] Sulfonated hydrogel electrolyte enables dendrite-free zinc-ion batteries
    Hu, Yingqi
    Wang, Zhan
    Li, Yingzhi
    Liu, Peiwen
    Liu, Xinlong
    Liang, Guangxian
    Zhang, Di
    Fan, Xin
    Lu, Zhouguang
    Wang, Wenxi
    CHEMICAL ENGINEERING JOURNAL, 2024, 479
  • [34] An Ultrahigh-Modulus Hydrogel Electrolyte for Dendrite-Free Zinc Ion Batteries
    Chen, Zong-Ju
    Shen, Tian-Yu
    Xiao, Xiong
    He, Xiu-Chong
    Luo, Yan-Long
    Jin, Zhong
    Li, Cheng-Hui
    ADVANCED MATERIALS, 2024, 36 (52)
  • [35] A dendrite-free anode for stable aqueous rechargeable zinc-ion batteries
    Kumar, Santosh
    Yoon, Hocheol
    Park, Hyeonghun
    Park, Geumyong
    Suh, Seokho
    Kim, Hyeong-Jin
    JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2022, 108 : 321 - 327
  • [36] Sulfonated hydrogel electrolyte enables dendrite-free zinc-ion batteries
    Hu, Yingqi
    Wang, Zhan
    Li, Yingzhi
    Liu, Peiwen
    Liu, Xinlong
    Liang, Guangxian
    Zhang, Di
    Fan, Xin
    Lu, Zhouguang
    Wang, Wenxi
    Chemical Engineering Journal, 2024, 479
  • [37] Surface modulation of zinc anodes by foveolate ZnTe nanoarrays for dendrite-free zinc ion batteries
    He, Yi
    Wang, Cong
    Gan, Yaping
    Kang, Lingzhi
    Xie, Lei
    He, Yuhao
    Wu, Zhihui
    Tong, Guotong
    Zhang, Heng
    Hu, Qiang
    DALTON TRANSACTIONS, 2024, 53 (05) : 2341 - 2348
  • [38] Dendrite-Free Zinc Anode for Zinc-Based Batteries by Pre-Deposition of a Cu-Zn Alloy Layer on Copper Surface via an In Situ Electrochemical Oxidation-Reduction Reaction
    Davis, Daiphi
    Balakrishnan, Jeena C.
    Thomas, Joy Vadakkan
    ENERGY STORAGE, 2024, 6 (08)
  • [39] Two-Dimensional Materials for Dendrite-Free Zinc Metal Anodes in Aqueous Zinc Batteries
    Xu, Wen
    Zhang, Minghui
    Dong, Yanfeng
    Zhao, Jingwen
    BATTERIES-BASEL, 2022, 8 (12):
  • [40] Hexaoxacyclooctadecane induced interfacial engineering to achieve dendrite-free Zn ion batteries
    Li, Rui
    Li, Mengchao
    Chao, Yu
    Guo, Jianqiang
    Xu, Gui
    Li, Borong
    Liu, Zheyuan
    Yang, Chengkai
    Yu, Yan
    ENERGY STORAGE MATERIALS, 2022, 46 : 605 - 612