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Binder-free V2O5/CNT paper electrode for high rate performance zinc ion battery

机译:Binder-free V2O5 / CNT纸电极对高速率锌离子电池性能

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摘要

Organic compounds, such as polyvinylidene fluoride (PVDF), have been widely used as a binder in battery electrode preparations. While such an approach does not have a significant impact on the performance of the batteries that utilize low valence ions, such as the Li ion battery (LIB), the diffusion of high valence ions (such as Zn2+) will be severely impaired. This will be especially pronounced if the polymeric binder contains highly electronegative atoms, such as fluorine. The high charge density ions, such as Zn2+, tend to adsorb onto these electronegative atoms, thus the mobility of these ions across the material is inevitably affected. As such, it becomes highly necessary to consider the binder-free electrode architecture when designing a high rate performing and cycling-stable zinc ion battery (ZIB) cathode. Herein, this work demonstrates an improved Zn ion battery by adopting a freestanding electrode. The obtained V2O5/CNT paper electrode delivers a specific capacity of 312 mA h g(-1), while achieving a respectable 75% retention in capacity after increasing the current density by 10-fold. Furthermore, excellent cycling stability is recorded with 81% capacity retention after 2000 cycles at 1.0 A g(-1). Thus, this work clearly demonstrated that the freestanding electrode is a promising approach for high valence ion batteries.
机译:有机化合物,如聚偏二氟乙烯(PVDF),被广泛用作粘合剂电池电极的准备。方法不会产生重大影响电池的性能,利用低价离子,如锂离子电池(自由)高的价离子的扩散(如Zn2 +)将严重受损。如果聚合物粘结剂尤其明显包含高度原子的电负性,比如氟。Zn2 +,倾向于吸附在这些电负性原子,因此这些离子的流动穿越材料是不可避免地受到影响。变得非常必要的考虑binder-free电极结构在设计高速率和cycling-stable锌离子电池阴极(ZIB)。展示了一种改进的锌离子电池采用独立式的电极。V2O5 / CNT纸电极提供了一个特定的容量312毫安h g(1),而实现受人尊敬的能力后保留75%增加10倍的电流密度。此外,良好的循环稳定性记录能力保留在2000年后的81%周期为1.0 g(1)。证明了独立的电极是一个有前途的方法对高价离子电池。

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