Integrated, Flexible Lithium Metal Battery with Improved Mechanical and Electrochemical Cycling Stability

被引:17
|
作者
Li, Shaowen [1 ]
Ma, Yue [1 ]
Ren, Jin [1 ]
Liu, Huanyan [1 ]
Zhang, Kun [1 ]
Zhang, Yuanyuan [1 ]
Tang, Xiaoyu [1 ]
Wu, Weiwei [1 ]
Sun, Changchun [1 ]
Wei, Bingqing [2 ]
机构
[1] Northwestern Polytech Univ, Sch Mat Sci & Engn, Ctr Nano Energy Mat, State Key Lab Solidificat Proc, Xian 710072, Shaanxi, Peoples R China
[2] Univ Delaware, Dept Mech Engn, Newark, DC 19716 USA
基金
中国国家自然科学基金;
关键词
Flexible devices; Lithium metal batteries; Integrated electrodes; Dendrite-free; Lithiophilic alloys; SOLID-ELECTROLYTE INTERPHASE; INTERFACIAL LAYER; CURRENT COLLECTOR; CARBON-FILM; ANODE; DEPOSITION; NANOPARTICLES; PERFORMANCE; LIFE;
D O I
10.1021/acsaem.9b00369
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The success of beyond lithium-ion battery (LIB) technologies, i.e., Li oxygen and Li-S cells, depends in large part on the use of metallic anode materials. Metallic lithium, however, tends to grow parasitic dendrites, which would penetrate the separator to cause safety concerns. Moreover, the dendrites are highly reactive to carbonate electrolytes and invariably render a reduced Coulombic efficiency. Here, we propose our design of a dendrite blocking layer with size-tunable Ag nanoparticles (NPs) decorated on the mesoporous SiO2 nanospheres. The synergistic coupling of these complementary components enables the effective regulation of the lithium nucleation behavior via a protected Li-Ag alloying process. The Li plating/stripping process of a symmetric Ag NPs@SiO2-coated Li-metal cell exhibits a reduced voltage hysteresis, facile lithium nucleation process, and enhanced Coulombic efficiencies at various current densities. When the Ag NPs@SiO2-coated copper foil anode was integrated with lithium manganese oxide (LMO) or sulfur (5) cathodes in full-cell configurations, both the Li-LMO and the Li-S cells exhibit high energy densities with a Coulombic efficiency of similar to 98.5% for 150 cycles. Furthermore, a flexible metallic cell model with satisfactory mechanical and electrochemical cycling stability (up to 1750 h) was established. The prototype directly integrates the modified polyethylene (PE) separator with the Ag NPs@SiO2 dendrite blocking layer. Our approach could lead to the simultaneous realization of high energy density, mechanical flexibility, and safe operation of Li-metal-based batteries.
引用
收藏
页码:3642 / 3650
页数:17
相关论文
共 50 条
  • [21] Fluorinated pillared-layer metal-organic framework microrods for improved electrochemical cycling stability
    Zheng, Shasha
    Ru, Yue
    Xue, Huaiguo
    Pang, Huan
    CHINESE CHEMICAL LETTERS, 2021, 32 (12) : 3817 - 3820
  • [22] Investigations of the Electrochemical Stability of Aqueous Electrolytes for Lithium Battery Applications
    Wessells, Colin
    Ruffo, Riccardo
    Huggins, Robert A.
    Cui, Yi
    ELECTROCHEMICAL AND SOLID STATE LETTERS, 2010, 13 (05) : A59 - A61
  • [23] Lithium Metal Anode Modified by Lithium Acetate In Situ and Its Cycling Stability
    Chen Y.
    Zhao Q.
    Feng Y.
    He H.
    Kuei Suan Jen Hsueh Pao/Journal of the Chinese Ceramic Society, 2020, 48 (07): : 1055 - 1061
  • [24] Polyurethane/LLZTO solid electrolyte with excellent mechanical strength and electrochemical property for advanced lithium metal battery
    Gao, Yunqi
    Wang, Chengliang
    Wang, Hairui
    Feng, Changhao
    Pan, Hongwei
    Zhang, Zhenpeng
    He, Jianjiang
    Wang, Qingfu
    Chemical Engineering Journal, 2023, 474
  • [25] Electrochemical stability of copper in lithium-ion battery electrolytes
    Zhao, MC
    Kariuki, S
    Dewald, HD
    Lemke, FR
    Staniewicz, RJ
    Plichta, EJ
    Marsh, RA
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2000, 147 (08) : 2874 - 2879
  • [26] Polyurethane/LLZTO solid electrolyte with excellent mechanical strength and electrochemical property for advanced lithium metal battery
    Gao, Yunqi
    Wang, Chengliang
    Wang, Hairui
    Feng, Changhao
    Pan, Hongwei
    Zhang, Zhenpeng
    He, Jianjiang
    Wang, Qingfu
    CHEMICAL ENGINEERING JOURNAL, 2023, 474
  • [27] Integrated Design for Regulating the Interface of a Solid-State Lithium-Oxygen Battery with an Improved Electrochemical Performance
    Ouyang, Hao
    Min, Shan
    Yi, Jin
    Liu, Xiaoyu
    Ning, Fanghua
    Xu, Yi
    Jiang, Yong
    Zhao, Bing
    Zhang, Jiujun
    ACS APPLIED MATERIALS & INTERFACES, 2022, 14 (48) : 53648 - 53657
  • [28] Quantitative investigation on the overcharge cycling-induced severe degradation of electrochemical and mechanical properties of lithium-ion battery cells
    Guo, Zixin
    Ma, Zhichao
    Zhao, Wenyang
    Wang, Shenghui
    Zhao, Hongwei
    Ren, Luquan
    ENERGY, 2025, 318
  • [29] Electrochemical stability windows of Ali-cyclic ionic liquids as lithium metal battery Electrolytes: A computational approach
    Maftoon-Azad, L.
    JOURNAL OF MOLECULAR LIQUIDS, 2021, 343
  • [30] The electrochemical stability of lithium-metal oxides against metal reduction
    Ceder, G
    Aydinol, MK
    SOLID STATE IONICS, 1998, 109 (1-2) : 151 - 157