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Oligoether/Zwitterion Diblock Copolymers: Synthesis and Application as Cathode-Coating Material for Li Batteries

机译:寡核醚/枯水二嵌段共聚物:合成和应用作为LI电池的阴极涂装材料

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摘要

Poly (ethylene oxide) (PEO) has been investigated as an ion-conductive matrix for several decades due to its excellent properties. However, further improvements are needed to enable a PEO-based ion-conductive matrix for practical applications. In order to develop novel solid polymer electrolytes based on zwitterions, we synthesized diblock copolymers (PPEGMA-b-SPBs) with oligoether and zwitterionic side-chains and evaluated their physico-chemical properties. PPEGMA-b-SPBs with various unit ratios were synthesized by RAFT polymerization. PPEGMA-b-SPBs with/without LiTFSA exhibited two distinct glass transition temperatures regardless of the unit ratio of PEGMA and SPB. AFM observations clearly revealed phase-separated structures. The ionic conductivity of PPEGMA-b-SPBs increased even at a high salt concentrations such as [EO]:[Li] = 6:1 and was over 10−5 S cm−1 at 25 °C. This tendency is unusual in a PEO matrix. The oxidation stability of PPEGMA-b-SPBs was about 5.0 V vs. Li/Li+, which is a higher value than that of PEO. The improvement of the electrochemical properties is attributed to the introduction of the SPB block into the block copolymers. PPEGMA-b-SPBs were evaluated as cathode-coating materials for Li batteries. The discharge capacity and coulombic efficiency of the cells employing the cathode (LiNi1/3Mn1/3Co1/3O2 (NMC)) coated with the block copolymers were much higher than those of the cell employing the pristine cathode at the 50th cycle in the cut-off voltage range of 3.0–4.6 V.
机译:由于其优异的性能,已经研究了聚(环氧乙烷)(PEO)作为离子导电基质的几十三。然而,需要进一步的改进来实现基于PEO的离子导电矩阵进行实际应用。为了开发基于两性体的新型固体聚合物电解质,我们用寡聚醚和两性离子侧链合成二嵌段共聚物(PPEGMA-B-SPBS),并评估其物理化学性质。通过筏聚合合成具有各种单元比的PPEGMA-B-SPB。具有/不含LITFSA的PPEGMA-B-SPBS表现出两个不同的玻璃化转变温度,无论PEGMA和SPB的单位比如何。 AFM观察明显揭示了相分离的结构。即使在高盐浓度如[EO]中,PPEGMA-B-SPBS的离子电导率也增加:[Li] = 6:1,在25℃下超过10-5秒CM-1。这种趋势在PEO矩阵中是不寻常的。 PPEGMA-B-SPBS的氧化稳定性约为5.0V与Li / Li +,其值高于PEO的值。电化学性质的改善归因于将SPB嵌段引入嵌段共聚物。 PPEGMA-B-SPBS被评价为LI电池的阴极涂料材料。使用嵌段共聚物的阴极(LINI1 / 3MN1 / 3CO1 / 3O2(NMC))的电池的放电容量和库仑效率远高于在截止的第50个循环处采用原始阴极的电池的电池电压范围为3.0-4.6 V.

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