TY - JOUR
T1 - Two-dimensional sp2-carbon-linked covalent organic framework for large-capacity and long-life Na metal batteries
AU - Zhuang, Rong
AU - Qu, Changzhen
AU - Yang, Jiaying
AU - Xu, Shunqi
AU - Xu, Fei
N1 - Publisher Copyright:
© 2024 Wiley Periodicals LLC.
PY - 2024/11/1
Y1 - 2024/11/1
N2 - Na metal batteries are regarded as an encouraging route for energy-dense and low-cost battery systems. However, the unstable and irreversible Na plating/stripping, caused by the uncontrolled dendritic Na growth, prevents their practical applications. Herein, a two-dimensional sp2-carbon-linked covalent organic framework (cyano-sp2c-COF) is adopted as seeding/hosting coating layer for a highly stable interface with long cycling life, large capacity, and high Na utilization. Benefit from the features of a fully π-conjugated structure and well-defined cyano groups, cyano-sp2c-COF with superior sodiophilicity and small interface resistance can reduce the nucleation barrier, enable Na ion flux uniformity, and enhance interface stability. Ultimately, the system achieves a low nucleation overpotential of only 10 mV, a remarkable average Coulombic efficiency of 99.7% maintained over 500 cycles in half cells, and exceptional interfacial durability of 8500 h with a high accumulated capacity of 8.5 Ah cm−2 in symmetric cells. Furthermore, the symmetric cells also present a steady cycling, even increasing the depth of discharge up to 90%. As proof, full cells demonstrate a long lifespan enduring 2700 cycles with tiny capacity decay, providing valuable insights into the long-life Na batteries.
AB - Na metal batteries are regarded as an encouraging route for energy-dense and low-cost battery systems. However, the unstable and irreversible Na plating/stripping, caused by the uncontrolled dendritic Na growth, prevents their practical applications. Herein, a two-dimensional sp2-carbon-linked covalent organic framework (cyano-sp2c-COF) is adopted as seeding/hosting coating layer for a highly stable interface with long cycling life, large capacity, and high Na utilization. Benefit from the features of a fully π-conjugated structure and well-defined cyano groups, cyano-sp2c-COF with superior sodiophilicity and small interface resistance can reduce the nucleation barrier, enable Na ion flux uniformity, and enhance interface stability. Ultimately, the system achieves a low nucleation overpotential of only 10 mV, a remarkable average Coulombic efficiency of 99.7% maintained over 500 cycles in half cells, and exceptional interfacial durability of 8500 h with a high accumulated capacity of 8.5 Ah cm−2 in symmetric cells. Furthermore, the symmetric cells also present a steady cycling, even increasing the depth of discharge up to 90%. As proof, full cells demonstrate a long lifespan enduring 2700 cycles with tiny capacity decay, providing valuable insights into the long-life Na batteries.
KW - covalent organic frameworks
KW - Na metal batteries
KW - seeding/hosting coating layer
UR - http://www.scopus.com/inward/record.url?scp=85191241466&partnerID=8YFLogxK
U2 - 10.1002/pol.20240114
DO - 10.1002/pol.20240114
M3 - 文章
AN - SCOPUS:85191241466
SN - 2642-4150
VL - 62
SP - 4898
EP - 4907
JO - Journal of Polymer Science
JF - Journal of Polymer Science
IS - 21
ER -