Fast Ion Conduction Nanofiber Matrix Composite Electrolyte for Dendrite-Free Solid-State Sodium-Ion Batteries with Wide Temperature Operation

被引:31
|
作者
Wu, Shuanglin [1 ]
Yu, Zhifeng [1 ]
Nie, Xiaolin [1 ]
Wang, Zhihui [1 ]
Huang, Fenglin [1 ]
Wei, Qufu [1 ]
机构
[1] Jiangnan Univ, Minist Educ, Key Lab Ecotext, Wuxi 214122, Jiangsu, Peoples R China
基金
中国博士后科学基金;
关键词
composite electrolytes; high ionic conductivities; magnetron sputtering; sodium-ion batteries; wide temperatures; POLYMER ELECTROLYTES; TRANSFERENCE NUMBER; LITHIUM; INTERFACE; ANODE;
D O I
10.1002/aenm.202202930
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
Sodium-ion batteries (SIBs) based on solid-state electrolytes (SSEs), although safe for high temperatures, are less capable of transferring ions at ambient temperatures, let alone at low temperatures. This work offers a simple and scalable technique to construct a nanofiber matrix composite electrolyte with boosting Na+ transport and interfacial compatibility for SIBs. Benefitting from the salt dissociation and selective cation conduction synergistic effect of the acylamino, carbonyl, and ester groups in the low-cost copolymer synthesized from 2-(methacryloyloxy)ethyl acetoacetate and N,N '-methylenebisacrylamide, a facilitating of Na+ transport at extreme temperatures is realized. Besides, flexible flame retardance ceramic SiO2 nanofibers greatly enhance high-temperature safety. The ultrathin functional AlF3 layer generated by binder-free magnetron sputtering suppresses the dendrites, eliminating the interfacial issues between the electrolyte and anode, which is proved by 5500 h of ultrasteady plating/stripping. Superior ionic conductivity of 0.153 mS cm(-1) at -30 degrees C implies fast Na+ transport, which is further evidenced by molecular dynamics simulations. Rate performance at 0.05-10 C from -30 to 130 degrees C further demonstrates the excellent electrochemical performance of the electrolyte. This work provides encouraging guidance for high-safety SSEs with rapid Na+ conduction for SIBs operating at extra-wide temperatures.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Hydrogen-Free and Dendrite-Free All-Solid-State Zn-Ion Batteries
    Ma, Longtao
    Chen, Shengmei
    Li, Na
    Liu, Zhuoxin
    Tang, Zijie
    Zapien, Juan Antonio
    Chen, Shimou
    Fan, Jun
    Zhi, Chunyi
    Advanced Materials, 2020, 32 (14):
  • [32] Hydrogen-Free and Dendrite-Free All-Solid-State Zn-Ion Batteries
    Ma, Longtao
    Chen, Shengmei
    Li, Na
    Liu, Zhuoxin
    Tang, Zijie
    Zapien, Juan Antonio
    Chen, Shimou
    Fan, Jun
    Zhi, Chunyi
    ADVANCED MATERIALS, 2020, 32 (14)
  • [33] Comprehensive insights into solid-state electrolytes and electrode-electrolyte interfaces in all-solid-state sodium-ion batteries
    Gao, Xinran
    Xing, Zheng
    Wang, Mingyue
    Nie, Chuanhao
    Shang, Zhichao
    Bai, Zhongchao
    Dou, Shi Xue
    Wang, Nana
    ENERGY STORAGE MATERIALS, 2023, 60
  • [34] A stable cathode-solid electrolyte composite for high-voltage, long-cycle-life solid-state sodium-ion batteries
    Wu, Erik A.
    Banerjee, Swastika
    Tang, Hanmei
    Richardson, Peter M.
    Doux, Jean-Marie
    Qi, Ji
    Zhu, Zhuoying
    Grenier, Antonin
    Li, Yixuan
    Zhao, Enyue
    Deysher, Grayson
    Sebti, Elias
    Nguyen, Han
    Stephens, Ryan
    Verbist, Guy
    Chapman, Karena W.
    Clement, Raphaele J.
    Banerjee, Abhik
    Meng, Ying Shirley
    Ong, Shyue Ping
    NATURE COMMUNICATIONS, 2021, 12 (01)
  • [35] A stable cathode-solid electrolyte composite for high-voltage, long-cycle-life solid-state sodium-ion batteries
    Erik A. Wu
    Swastika Banerjee
    Hanmei Tang
    Peter M. Richardson
    Jean-Marie Doux
    Ji Qi
    Zhuoying Zhu
    Antonin Grenier
    Yixuan Li
    Enyue Zhao
    Grayson Deysher
    Elias Sebti
    Han Nguyen
    Ryan Stephens
    Guy Verbist
    Karena W. Chapman
    Raphaële J. Clément
    Abhik Banerjee
    Ying Shirley Meng
    Shyue Ping Ong
    Nature Communications, 12
  • [36] A novel composite solid electrolyte with ultrahigh ion transference number and stability for solid-state sodium metal batteries
    Wang, Wenting
    Ding, Minghui
    Chen, Siyi
    Weng, Junying
    Zhang, Pengju
    Yuan, Wenyong
    Bi, Aijun
    Zhou, Pengfei
    CHEMICAL ENGINEERING JOURNAL, 2024, 491
  • [37] Nano-Scale Complexions Facilitate Li Dendrite-Free Operation in LATP Solid-State Electrolyte
    Stegmaier, Sina
    Schierholz, Roland
    Povstugar, Ivan
    Barthel, Juri
    Rittmeyer, Simon P.
    Yu, Shicheng
    Wengert, Simon
    Rostami, Samare
    Kungl, Hans
    Reuter, Karsten
    Eichel, Rudiger-A.
    Scheurer, Christoph
    ADVANCED ENERGY MATERIALS, 2021, 11 (26)
  • [38] A hybrid solid electrolyte for solid-state sodium ion batteries with good cycle performance
    Cheng, Meng
    Qu, Tao
    Zi, Jie
    Yao, Yaochun
    Liang, Feng
    Ma, Wenhui
    Yang, Bin
    Dai, Yongnian
    Lei, Yong
    NANOTECHNOLOGY, 2020, 31 (42)
  • [39] The Layered Oxides in Lithium and Sodium-Ion Batteries: A Solid-State Chemistry Approach
    Delmas, Claude
    Carlier, Dany
    Guignard, Marie
    ADVANCED ENERGY MATERIALS, 2021, 11 (02)
  • [40] Rational design of fireproof fiber-network reinforced 3D composite solid electrolyte for dendrite-free solid-state batteries
    Luo, Shiqiang
    Zhao, Enyou
    Gu, Yixuan
    Huang, Jun
    Zhang, Zhengxi
    Yang, Li
    Hirano, Shin-ichi
    CHEMICAL ENGINEERING JOURNAL, 2021, 421