College of Chemistry, Northeast Normal University, 5268 Renmin Street, Changchun, 130024, P. R. China.
College of Chemical Engineering, Changchun University of Technology, 2055 Yan'an Street, Changchun, 130012, P. R. China.
Macromol Rapid Commun. 2023 May;44(10):e2200865. doi: 10.1002/marc.202200865. Epub 2023 Apr 14.
Lithium-ion batteries (LIBs) have become the research focus of energy storage products. Due to the combination of Li and the Lewis basic sites of polymer chains, anions move more than five times faster, which do not participate in the electrode reaction during the discharge cycles, leading to concentration polarization, voltage losses, and high internal resistance. To solve this phenomenon, in this work, a polymer network structure of single-ion polymer electrolyte-based polyimide (DPI-SIGPE) with plasticizer ethylene carbonate (EC)/dimethyl carbonate (DMC) is formed by in-situ cross-linking double bond polyimide, 4-styrene sulfonyl (benzenesulfonyl) imide, and cross-linking agent pentaerythritol tetra(2-thiol acetate) under UV irradiation. By incorporating the anion as a part of the polymer chain, DPI-SIGPE exhibits high lithium-ion conductivity of 2.7 × 10 S cm at 30 °C and transference number of 0.87. Typical lithium stripping/plating cycling of 900 h demonstrates uniform lithium deposition impacted by DPI-SIGPE. Meanwhile, it has good dimensional thermal stability with no obvious shrinkage at 200 °C for 0.5 h and wide electrochemical window of 4.6 V. Thus, the polyimide-based cross-linked single-ion gel polymer electrolyte has the promising potential for application in LIBs.
锂离子电池(LIBs)已成为储能产品的研究焦点。由于锂与聚合物链的路易斯碱性位的结合,阴离子的迁移速度提高了五倍以上,在放电循环过程中不参与电极反应,导致浓度极化、电压损失和高内阻。为了解决这一现象,在这项工作中,通过原位交联双键聚酰亚胺、4-苯乙烯磺酰(苯磺酰)亚胺和交联剂季戊四醇四(2-硫代乙酸酯),形成了基于单离子聚合物电解质的聚酰亚胺(DPI-SIGPE)的聚合物网络结构,使用增塑剂碳酸乙烯酯(EC)/碳酸二甲酯(DMC)。通过将阴离子作为聚合物链的一部分,DPI-SIGPE 在 30°C 时表现出 2.7×10 S cm 的高锂离子电导率和 0.87 的迁移数。900 h 的典型锂剥离/电镀循环表明,DPI-SIGPE 均匀影响锂的沉积。同时,它具有良好的尺寸热稳定性,在 200°C 下 0.5 h 无明显收缩,电化学窗口宽达 4.6 V。因此,基于聚酰亚胺的交联单离子凝胶聚合物电解质在 LIBs 中具有广阔的应用前景。