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氧化铜填料的形态变化对锂金属聚合物电池用固体聚合物电解质性能的影响。

Effect of morphological change of copper-oxide fillers on the performance of solid polymer electrolytes for lithium-metal polymer batteries.

作者信息

Choi Bit Na, Yang Jin Hoon, Kim Yong Seok, Chung Chan-Hwa

机构信息

School of Chemical Engineering, Sungkyunkwan University Suwon 16419 Republic of Korea

出版信息

RSC Adv. 2019 Jul 15;9(38):21760-21770. doi: 10.1039/c9ra03555a. eCollection 2019 Jul 11.

Abstract

Solid polymer electrolytes (SPEs) for Li-metal polymer batteries are prepared, in which poly(ethylene oxide) (PEO), lithium bis(trifluoromethylsulfonyl)imide (LiTFSI), and copper-oxide fillers are formulated. Their structural and electrochemical properties are analyzed when the morphology of the copper-oxide fillers has been modulated to spherical or dendritic structure. The ionic conductivity obtained by electrochemical impedance spectroscopy (EIS) has been increased to 1.007 × 10 S cm at 30 °C and 1.368 × 10 S cm at 60 °C, as the 5 wt% dendritic fillers have been added to the SPEs. This ionic conductivity value is 1.3 times higher than that of 5 wt% spherical filler-contained SPEs. The analyses of differential scanning calorimetry (DSC) and X-ray diffraction (XRD) indicate that the increase of ionic conductivity is due to the remarkable decrease of crystallinity upon the addition of copper-oxide filler into PEO matrix of SPEs. The fabricated SPEs with the dendritic copper-oxide fillers present a total ionic transference number of 0.99 and a lithium-ion transference number of 0.38. More importantly, it presents a stable potential window of 2.0-4.8 V at 25 °C and high thermal stability up to 300 °C. The specific discharge capacity of the prepared cell with the dendritic filler-contained SPEs is measured to be 51 mA h g and 125 mA h g under 0.1 current-rate (C-rate) at 25 °C and 60 °C, respectively. In this study, the ionic conductivity and the electrochemical performance of the PEO-based polymer electrolyte have been evaluated when morphologically different copper-oxide fillers have been incorporated into the PEO matrix. We have also confirmed the safety and the flexibility of the prepared solid polymer electrolytes when they are used in flexible lithium-metal polymer batteries (LMPBs).

摘要

制备了用于锂金属聚合物电池的固体聚合物电解质(SPEs),其中包含聚环氧乙烷(PEO)、双(三氟甲基磺酰)亚胺锂(LiTFSI)和氧化铜填料。当氧化铜填料的形态被调控为球形或树枝状结构时,对其结构和电化学性能进行了分析。通过电化学阻抗谱(EIS)测得,在30℃时离子电导率提高到1.007×10⁻³ S/cm,在60℃时提高到1.368×10⁻³ S/cm,因为已向SPEs中添加了5 wt%的树枝状填料。该离子电导率值比含5 wt%球形填料的SPEs高1.3倍。差示扫描量热法(DSC)和X射线衍射(XRD)分析表明,离子电导率的提高是由于在SPEs的PEO基体中添加氧化铜填料后结晶度显著降低。制备的含树枝状氧化铜填料的SPEs呈现出总离子迁移数为0.99,锂离子迁移数为0.38。更重要的是,它在25℃时呈现出2.0 - 4.8 V的稳定电位窗口,并且具有高达300℃的高热稳定性。含树枝状填料的SPEs制备的电池在25℃和60℃下,0.1电流倍率(C倍率)下的比放电容量分别测得为51 mA h/g和125 mA h/g。在本研究中,当将形态不同的氧化铜填料掺入PEO基体时,对基于PEO的聚合物电解质的离子电导率和电化学性能进行了评估。我们还证实了制备的固体聚合物电解质在用于柔性锂金属聚合物电池(LMPBs)时的安全性和柔韧性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d02c/9066739/db1302ec4978/c9ra03555a-f1.jpg

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