Bioinspired, Tree-Root-Like Interfacial Designs for Structural Batteries with Enhanced Mechanical Properties

被引:37
|
作者
Jin, Tianwei [1 ]
Ma, Yirui [1 ]
Xiong, Zechen [2 ]
Fan, Xiaoyu [1 ]
Luo, Yu [1 ]
Hui, Zeyu [1 ]
Chen, Xi [2 ]
Yang, Yuan [1 ]
机构
[1] Columbia Univ, Dept Appl Phys & Appl Math, Program Mat Sci & Engn, New York, NY 10027 USA
[2] Columbia Univ, Ctr Adv Mat Energy & Environm, Earth Engn Ctr, Dept Earth & Environm Engn, New York, NY 10027 USA
关键词
finite element simulation; interfacial design; specific energy; structural energy storage; CYCLING LITHIUM METAL; CARBON-FIBERS; HIGH-CAPACITY; ELECTRODES; PERFORMANCE; SILICON; ANODES; CELLS; POWER;
D O I
10.1002/aenm.202100997
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
Structural batteries are attractive for weight reduction in vehicles, such as cars and airplanes, which requires batteries to have both excellent mechanical properties and electrochemical performance. This work develops a scalable and feasible tree-root-like lamination at the electrode/separator interface, which effectively transfers load between different layers of battery components and thus dramatically enhances the flexural modulus of pouch cells from 0.28 to 3.1 GPa. The underlying mechanism is also analyzed by finite element simulations. Meanwhile, the interfacial lamination has a limited effect on the electrochemical performance of Li-ion cells. A graphite/LiNi0.5Mn0.3Co0.2O2 full cell with such interfacial lamination delivers a steady discharge capacity of 148.6 mAh g(-1) at C/2 and 95.5% retention after 500 cycles. Moreover, the specific energy only decreases by 3%, which is the smallest reduction reported so far in structural batteries. A prototype of "electric wings" is also demonstrated, which allows an aircraft model to fly steadily. This work illustrates that engineering interfacial adhesion is an effective and scalable approach to develop structural batteries with excellent mechanical and electrochemical properties.
引用
收藏
页数:8
相关论文
共 50 条
  • [1] Determination of Tree Root Mechanical Properties
    Boland, Kaleb
    Ravichandran, Nadarajah
    GEO-CONGRESS 2024: SOIL IMPROVEMENT, SUSTAINABILITY, GEOENVIRONMENTAL, AND COLD REGIONS ENGINEERING, 2024, 351 : 411 - 421
  • [2] Bioinspired energetic composites with enhanced interfacial, thermal and mechanical performance by "grafting to" way
    Zeng, Cheng-cheng
    Gong, Fei-yan
    Lin, Cong-mei
    He, Guan-song
    Pan, Li-ping
    Li, Yu-bin
    Hao, Shi-long
    Yang, Zhi-jian
    ENERGETIC MATERIALS FRONTIERS, 2021, 2 (03): : 218 - 227
  • [3] Bioinspired structural and functional designs towards interfacial solar steam generation for clean water production
    Dong, Xiuli
    Gao, Shouwei
    Li, Shuhui
    Zhu, Tianxue
    Huang, Jianying
    Chen, Zhong
    Lai, Yuekun
    MATERIALS CHEMISTRY FRONTIERS, 2021, 5 (04) : 1510 - 1524
  • [4] Bioinspired tree-like electroactive poly(lactic acid) nanofibers with enhanced surface activity and interfacial polarization for intelligent health management
    Shen, Mengyuan
    Li, Jiaqi
    Ke, Lv
    Zhang, Yifan
    Zhu, Guiying
    Li, Xiang
    Li, Jia-Qiong
    Shao, Jiang
    He, Xinjian
    Zhang, Mingming
    Xu, Huan
    SEPARATION AND PURIFICATION TECHNOLOGY, 2025, 360
  • [5] Bioinspired actuators with intrinsic muscle-like mechanical properties
    Liu, Chunbao
    Wang, Yingjie
    Qian, Zhihui
    Wang, Kunyang
    Zhao, Fangzhou
    Ding, Peng
    Xu, Daojie
    Wei, Guowu
    Ren, Luquan
    Ren, Lei
    ISCIENCE, 2021, 24 (09)
  • [6] Enhanced Mechanical-Magnetic Coupling and Bioinspired Structural Design of Magnetorheological Elastomers
    Wang, Dongpeng
    Zhao, Chunyu
    Yang, Junjie
    Lai, Shuyu
    Wang, Xinyi
    Gong, Xinglong
    ADVANCED FUNCTIONAL MATERIALS, 2024,
  • [7] Bioinspired Interfacial Chelating-like Reinforcement Strategy toward Mechanically Enhanced Lamellar Materials
    Chen, Ke
    Zhang, Shuhao
    Li, Anran
    Tang, Xuke
    Li, Lidong
    Guo, Lin
    ACS NANO, 2018, 12 (05) : 4269 - 4279
  • [8] Recent progress of structural designs of silicon for performance -enhanced lithium -ion batteries
    Qi, Ying
    Wang, Guang
    Li, Sheng
    Liu, Tiefeng
    Qiu, Jingxia
    Li, Huaming
    CHEMICAL ENGINEERING JOURNAL, 2020, 397
  • [9] Scalable, low-cost, and environment-friendly preparation of high strength carbon-matrix composites with tree-root-like structured reinforcements
    Chen, Qichen
    Yang, Zefeng
    Lin, Jiahui
    Wei, Wenfu
    Li, Hao
    Yin, Guofeng
    Liu, Yijie
    Li, Pengli
    Tu, Chuanjun
    Gao, Guoqiang
    Huang, Xingyi
    Wu, Guangning
    COMPOSITES COMMUNICATIONS, 2022, 32
  • [10] A Bioinspired Hydrogel-Elastomer Hybrid Surface for Enhanced Mechanical Properties and Lubrication
    Huang, Yan
    Wang, Jing
    Yu, Wei-jiang
    Yu, Yan
    Li, Ren-yun
    Gao, Qiang
    Ren, Ke-feng
    Ji, Jian
    ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (42) : 50461 - 50469