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Aqueous Binder Enhanced High-Performance GeP5 Anode for Lithium-Ion Batteries

机译:用于锂离子电池的水性粘合剂增强型高性能GeP5阳极

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摘要

GeP5 is a recently reported new anode material for lithium ion batteries (LIBs), it holds a large theoretical capacity about 2300 mAh g−1, and a high rate capability due to its bi-active components and superior conductivity. However, it undergoes a large volume change during its electrochemical alloying and de-alloying with Li, a suitable binder is necessary to stable the electrode integrity for improving cycle performance. In this work, we tried to apply aqueous binders LiPAA and NaCMC to GeP5 anode, and compared the difference in electrochemical performance between them and traditional binder PVDF. As can be seen from the test result, GeP5 can keep stable in both common organic solvents and proton solvents such as water and alcohol solvents, it meets the application requirements of aqueous binders. The electrochemistry results show that the use of LiPAA binder can significantly improve the initial Coulombic efficiency, reversible capacity, and cyclability of GeP5 anode as compared to the electrodes based on NaCMC and PVDF binders. The enhanced electrochemical performance of GeP5 electrode with LiPAA binder can be ascribed to the unique high strength long chain polymer structure of LiPAA, which also provide numerous uniform distributed carboxyl groups to form strong ester groups with active materials and copper current collector. Benefit from that, the GeP5 electrode with LiPAA can also exhibit excellent rate capability, and even at low temperature, it still shows attractive electrochemical performance.
机译:GeP5是最近报道的用于锂离子电池(LIB)的新型负极材料,它具有约2300 mAh g -1 的大理论容量,并且由于其双活性成分和优异的性能而具有很高的倍率能力电导率。然而,在其与Li的电化学合金化和脱合金过程中,它经历了很大的体积变化,因此需要合适的粘合剂来稳定电极的完整性,从而改善循环性能。在这项工作中,我们试图将水性粘合剂LiPAA和NaCMC应用于GeP5阳极,并比较了它们与传统粘合剂PVDF之间的电化学性能差异。从测试结果可以看出,GeP5可以在常见的有机溶剂和质子溶剂(例如水和醇类溶剂)中保持稳定,满足水性粘合剂的应用要求。电化学结果表明,与基于NaCMC和PVDF粘合剂的电极相比,使用LiPAA粘合剂可以显着提高GeP5阳极的初始库仑效率,可逆容量和可循环性。 LiPAA粘合剂增强了GeP5电极的电化学性能,可以归因于LiPAA独特的高强度长链聚合物结构,该结构还提供了许多均匀分布的羧基,与活性物质和铜集流体形成强酯基。受益于此,具有LiPAA的GeP5电极也可以表现出出色的倍率性能,即使在低温下,它仍具有诱人的电化学性能。

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