首页> 外文期刊>ACS applied materials & interfaces >From Nature to Energy Storage: A Novel Sustainable 3D Cross-Linked Chitosan-PEGGE-Based Gel Polymer Electrolyte with Excellent Lithium-Ion Transport Properties for Lithium Batteries
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From Nature to Energy Storage: A Novel Sustainable 3D Cross-Linked Chitosan-PEGGE-Based Gel Polymer Electrolyte with Excellent Lithium-Ion Transport Properties for Lithium Batteries

机译:从大自然到储能:一种新型可持续三维交联壳聚糖-PEGGE凝胶聚合物电解质,具有优异的锂电池锂离子传输性能

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摘要

Developing a gel polymer electrolyte with a cross-linked structure is one of the best choices to improve the mechanical strength of the gel polymer electrolyte without sacrificing its lithium-ion transportation properties. However, the cost is always too high. Herein, a novel gel polymer electrolyte based on three-dimensional cross-linked chitosanpoly(ethylene glycol) diglycidyl ether macromolecule network was designed and synthesized through a simple and environmental harmless method, with sustainable and cheap chitosan as major material. The obtained gel polymer electrolyte shows improved mechanical strength of 5.5 MPa, which is higher than that of other gel polymer electrolytes without inert frameworks. The optimized gel polymer electrolyte exhibits a good lithium ionic conductivity of 2.74 X 10(-4) S cm(-1) with a superior lithium-ion transfer number of 0.869 at 25 degrees C. Lithium battery assembled with this gel polymer electrolyte demonstrates an initial discharge capacity of 146.8 mA h g(-1), which retains 88.49% capacity after 360 cycles at 0.2C. Moreover, this gel polymer electrolyte possesses good interfacial compatibility with lithium anode. Therefore, the growth of lithium dendrite is greatly delayed. This research proves the great possibility of applying sustainable and cost-effective chitosan into gel polymer electrolyte and lithium batteries.
机译:用交联结构开发凝胶聚合物电解质是改善凝胶聚合物电解质的机械强度的最佳选择之一,而不会牺牲其锂离子输送性能。但是,成本总是太高。在此,基于三维交联壳聚糖(乙二醇)二缩水甘油醚大分子网络的新型凝胶聚合物电解质通过简单和环境无害的方法设计和合成,可持续和便宜的壳聚糖作为主要材料。所获得的凝胶聚合物电解质显示出5.5MPa的改善的机械强度,其高于其他凝胶聚合物电解质,而不具有惰性框架。优化的凝胶聚合物电解质具有2.74×10(-4)厘米(-1)的良好锂离子导电率,其优异的锂离子转移数为0.869,在25摄氏度下组装的锂电池表现出了初始放电容量为146.8 mA hg(-1),在0.2℃下360次循环后保留88.49%的容量。此外,这种凝胶聚合物电解质与锂阳极具有良好的界面相容性。因此,锂枝晶的生长大大延迟。本研究证明了将可持续和经济型壳聚糖应用于凝胶聚合物电解质和锂电池的可能性。

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