An All-Solid-State Coaxial Structural Battery Using Sodium-Based Electrolyte

被引:19
|
作者
Danzi, Federico [1 ,2 ]
Camanho, Pedro Ponces [2 ,3 ]
Braga, Maria Helena [1 ,2 ]
机构
[1] Univ Porto, Engn Fac, Engn Phys Dept, LAETA, P-4200465 Porto, Portugal
[2] Inst Sci & Innovat Mech & Ind Engn, INEGI, P-4200465 Porto, Portugal
[3] Univ Porto, Engn Fac, Mech Engn Dept, LAETA, P-4200465 Porto, Portugal
来源
MOLECULES | 2021年 / 26卷 / 17期
关键词
structural batteries; ferroelectric; sodium solid electrolyte; composite materials; multifunctional materials; COMPOSITES; PERFORMANCE; DESIGN;
D O I
10.3390/molecules26175226
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The transition to a sustainable society is paramount and requires the electrification of vehicles, the grid, industry, data banks, wearables, and IoT. Here, we show an all-solid-state structural battery where a Na+-based ferroelectric glass electrolyte is combined with metallic electrodes/current collectors (no traditional cathode present at fabrication) and thin-ply carbon-fiber laminates to obtain a coaxial multifunctional beam. This new concept aims to optimize the volume of any hollow beam-like structure by integrating an electrochemical system capable of both harvesting thermal and storing electrical energy while improving its mechanical performance. The coaxial cell is a coaxial cable where the dielectric is ferroelectric. The electrochemical results demonstrated the capability of performing three-minute charges to one-day discharges (70 cycles) and long-lasting discharges (>40 days at 1 mA) showing an energy density of 56.2 Wh center dot L-1 and specific energy of 38.0 Wh center dot kg(-1), including the whole volume and weight of the structural cell. This is the highest specific energy among safe structural cells, while no Na+-based structural cells were found in the literature. The mechanical tests, instead, highlighted the coaxial cell capabilities to withstand severe inelastic deformation without compromising its functionalities, while increasing the flexural strength of the hosting structure. Moreover, the absence of alkali metals and liquid electrolytes together with its enhanced thermal properties makes this coaxial structural battery a valid and safe alternative as an energy reservoir for all the applications where traditional lithium-ion batteries are not suitable.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] A high-energy quinone-based all-solid-state sodium metal battery
    Chi, Xiaowei
    Hao, Fang
    Zhang, Jibo
    Wu, Xiangwei
    Zhang, Ye
    Gheytani, Saman
    Wen, Zhaoyin
    Yao, Yan
    NANO ENERGY, 2019, 62 : 718 - 724
  • [32] Preparation and properties of a novel green solid polymer electrolyte for all-solid-state lithium battery
    Ge, Zhen
    Liu, Xiaoli
    Zou, Xiaobin
    Zhan, Yu
    Luo, Yunjun
    JOURNAL OF APPLIED POLYMER SCIENCE, 2021, 138 (37)
  • [33] Solid electrolyte/graphite composite particle for an all-solid-state lithium-ion battery
    Iwao, Motoshi
    Sakurai, Risa
    Nakamura, Hideya
    Hayakawa, Eiji
    Ohsaki, Shuji
    Watano, Satoru
    ADVANCED POWDER TECHNOLOGY, 2022, 33 (07)
  • [34] Improvement in the electrode-electrolyte interface of all-solid-state battery using aerosol deposition technology
    Wang, Xinyu
    Camacho, Ramon Alberto Paredes
    Oh, Jin An Sam
    Zhang, Y. F.
    Lu, Li
    FUNCTIONAL MATERIALS LETTERS, 2023, 16 (03N04)
  • [35] High temperature property of all-solid-state thin film lithium battery using LiPON electrolyte
    Li, Dezhan
    Ma, Zhongyun
    Xu, Jing
    Li, Yujie
    Xie, Kai
    MATERIALS LETTERS, 2014, 134 : 237 - 239
  • [36] Development of an all-solid-state lithium battery by slurry-coating procedures using a sulfidic electrolyte
    Ates, Tugce
    Keller, Marlou
    Kulisch, Joern
    Adermann, Torben
    Passerini, Stefano
    ENERGY STORAGE MATERIALS, 2019, 17 : 204 - 210
  • [37] A solid polymer electrolyte based on star-like hyperbranched β-cyclodextrin for all-solid-state sodium batteries
    Chen, Suli
    Feng, Fan
    Yin, Yimei
    Che, Haiying
    Liao, Xiao-Zhen
    Ma, Zi-Feng
    JOURNAL OF POWER SOURCES, 2018, 399 : 363 - 371
  • [38] Inorganic All-Solid-State Sodium Batteries: Electrolyte Designing and Interface Engineering
    Yang, Yaxiong
    Yang, Shoumeng
    Xue, Xu
    Zhang, Xianghua
    Li, Qifei
    Yao, Yu
    Rui, Xianhong
    Pan, Hongge
    Yu, Yan
    ADVANCED MATERIALS, 2024, 36 (01)
  • [39] A Plastic-Crystal Electrolyte Interphase for All-Solid-State Sodium Batteries
    Gao, Hongcai
    Xue, Leigang
    Xin, Sen
    Park, Kyusung
    Goodenough, John B.
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (20) : 5541 - 5545
  • [40] All-Solid-State Lithium-Sulfur Battery Based on a Nanoconfined LiBH4 Electrolyte
    Das, Supti
    Ngene, Peter
    Norby, Poul
    Vegge, Tejs
    de Jongh, Petra E.
    Blanchard, Didier
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2016, 163 (09) : A2029 - A2034