TY - JOUR
T1 - Precisely succinonitrile-functionalized PEO electrolytes toward room-temperature all-solid-state lithium batteries
AU - Li, Xinyang
AU - Zhang, Zongnan
AU - Feng, Jie
AU - Yin, Xiangkai
AU - Cui, Xiaofeng
AU - Xu, Wei
AU - Zhang, Hongjun
AU - Zeng, Rong
AU - Ding, Shujiang
N1 - Publisher Copyright:
© Science China Press 2024.
PY - 2024/5
Y1 - 2024/5
N2 - Polyethylene oxide) (PEO) polymer electrolytes have the potential for the use in all-solid-state lithium-metal batteries (ASSLMBs). However, no effective rules have been proposed to prepare all-solid-state PEO electrolytes that overcome the limitation being unusable at room temperature. In this study, based on the polymer C–H functionalization strategy, we design a highly ion-conductive PEO electrolyte by directly covalently linking succinonitrile functional-groups with lithium coordination activity on the polymer chains. The functional-groups enhance the disorder and mobility of the PEO chains while acting as effective sites for the fast ionic-conduction in the interchain, thus achieving a dual optimization of the free volume around ions and the migration behavior. Due to the precise tuning by functional-groups, the functionalized electrolyte exhibits enhanced ionic conductivity (>102 times), high transference number (~0.51) and wide electrochemical window (~0.47 V). In particular, the functionalized PEO300k electrolyte with a high ionic conductivity (1.01×10−4 S cm−1 at 25°C) enables the stable operation at room temperature, providing a path for the development of polymer-based electrolytes with practical applications.
AB - Polyethylene oxide) (PEO) polymer electrolytes have the potential for the use in all-solid-state lithium-metal batteries (ASSLMBs). However, no effective rules have been proposed to prepare all-solid-state PEO electrolytes that overcome the limitation being unusable at room temperature. In this study, based on the polymer C–H functionalization strategy, we design a highly ion-conductive PEO electrolyte by directly covalently linking succinonitrile functional-groups with lithium coordination activity on the polymer chains. The functional-groups enhance the disorder and mobility of the PEO chains while acting as effective sites for the fast ionic-conduction in the interchain, thus achieving a dual optimization of the free volume around ions and the migration behavior. Due to the precise tuning by functional-groups, the functionalized electrolyte exhibits enhanced ionic conductivity (>102 times), high transference number (~0.51) and wide electrochemical window (~0.47 V). In particular, the functionalized PEO300k electrolyte with a high ionic conductivity (1.01×10−4 S cm−1 at 25°C) enables the stable operation at room temperature, providing a path for the development of polymer-based electrolytes with practical applications.
KW - PEO electrolyte
KW - all-solid-state lithium battery
KW - fast ionic conduction
KW - polymer functionalization
KW - room temperature operation
UR - https://www.scopus.com/pages/publications/85190682988
U2 - 10.1007/s40843-024-2857-8
DO - 10.1007/s40843-024-2857-8
M3 - 文章
AN - SCOPUS:85190682988
SN - 2095-8226
VL - 67
SP - 1412
EP - 1421
JO - Science China Materials
JF - Science China Materials
IS - 5
ER -