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Swelling and plasticization of polymeric binders by Li-containing carbonate electrolytes using quartz crystal microbalance with dissipation

机译:使用石英晶体微稳定的含碱碳酸盐电解质的溶胀和塑化聚合物粘合剂,用石英晶体微稳定耗散

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摘要

Lithium ion battery electrodes are highly engineered, but their performance can be impacted by the properties of the polymeric binder in the electrode. Here, the swelling and plasticization of PVDF, PAA, BPEI and SEPDM by common carbonate-based electrolytes is probed using quartz crystal microbalance with dissipation (QCM-D). The swelling of the PVDF increased with increasing temperature and decreased slightly with addition of Li salt. The composition of ethylene and propylene carbonate in the electrolyte impacts the swelling more significantly than salt selection. Despite the large differences in the swelling (25%-75%), the high frequency shear modulus of the swollen PVDF remains nearly invariant for all conditions examined, which is attributed to its semi-crystalline network. In contrast, BPEI, SEPDM, and PAA are marginally swollen by carbonate electrolytes. These measurements provide insight into the electrolyte-binder interactions to help select pairs for emerging high-performance electrodes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:锂离子电池电极经过高度设计,但它们的性能可能受电极中聚合物粘合剂的性质的影响。在此,使用具有耗散的石英晶体微稳定(QCM-D),探测PVDF,PAA,BPEI和SePDM的PVDF,PAA,BPEI和SePDM的溶胀和塑化。 PVDF的溶胀随着温度的增加而增加,加入Li Salt略微降低。电解质中乙烯和碳酸丙酯的组成会影响比盐选择更显着的肿胀。尽管肿胀差异较大(25%-75%),但肿胀的PVDF的高频剪切模量对于所检查的所有条件仍然是近乎不变的,这归因于其半晶网。相比之下,BPEI,SEPDM和PAA通过碳酸盐电解质略微肿胀。这些测量提供了对电解质粘合剂相互作用的洞察,以帮助选择用于出现高性能电极的对。 (c)2018年elestvier有限公司保留所有权利。

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