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用于锂离子电池隔膜热稳定性和长期稳定性的聚酰亚胺/聚偏二氟乙烯共混物的多核壳纳米纤维结构

Multicore-shell nanofiber architecture of polyimide/polyvinylidene fluoride blend for thermal and long-term stability of lithium ion battery separator.

作者信息

Park Sejoon, Son Chung Woo, Lee Sungho, Kim Dong Young, Park Cheolmin, Eom Kwang Sup, Fuller Thomas F, Joh Han-Ik, Jo Seong Mu

机构信息

Carbon Composite Materials Research Center, Institute of Advanced Composite Materials, Korea Institute of Science and Technology, Jeollabuk-do, 55324, Korea.

Center for Materials Architecting, Korea Institute of Science and Technology, Hwarang-Ro 14gil-5, Seongbuk-Gu, Seoul 136-791, Republic of Korea.

出版信息

Sci Rep. 2016 Nov 11;6:36977. doi: 10.1038/srep36977.

Abstract

Li-ion battery, separator, multicoreshell structure, thermal stability, long-term stability. A nanofibrous membrane with multiple cores of polyimide (PI) in the shell of polyvinylidene fluoride (PVdF) was prepared using a facile one-pot electrospinning technique with a single nozzle. Unique multicore-shell (MCS) structure of the electrospun composite fibers was obtained, which resulted from electrospinning a phase-separated polymer composite solution. Multiple PI core fibrils with high molecular orientation were well-embedded across the cross-section and contributed remarkable thermal stabilities to the MCS membrane. Thus, no outbreaks were found in its dimension and ionic resistance up to 200 and 250 °C, respectively. Moreover, the MCS membrane (at 200 °C), as a lithium ion battery (LIB) separator, showed superior thermal and electrochemical stabilities compared with a widely used commercial separator (120 °C). The average capacity decay rate of LIB for 500 cycles was calculated to be approximately 0.030 mAh/g/cycle. This value demonstrated exceptional long-term stability compared with commercial LIBs and with two other types (single core-shell and co-electrospun separators incorporating with functionalized TiO) of PI/PVdF composite separators. The proper architecture and synergy effects of multiple PI nanofibrils as a thermally stable polymer in the PVdF shell as electrolyte compatible polymers are responsible for the superior thermal performance and long-term stability of the LIB.

摘要

锂离子电池、隔膜、多芯壳结构、热稳定性、长期稳定性。采用简便的单喷嘴一锅法静电纺丝技术制备了一种在聚偏氟乙烯(PVdF)壳层中含有多个聚酰亚胺(PI)核的纳米纤维膜。通过静电纺丝相分离的聚合物复合溶液,获得了电纺复合纤维独特的多芯壳(MCS)结构。具有高分子取向的多个PI核原纤维很好地贯穿整个横截面,为MCS膜贡献了显著的热稳定性。因此,在高达200和250°C时,其尺寸和离子电阻均未出现突变。此外,作为锂离子电池(LIB)隔膜的MCS膜(在约200°C时)与广泛使用的商业隔膜(约120°C)相比,表现出优异的热稳定性和电化学稳定性。计算得出LIB在500次循环中的平均容量衰减率约为0.030 mAh/g/循环。与商业LIB以及另外两种类型(单核壳和与功能化TiO共电纺的隔膜)的PI/PVdF复合隔膜相比,该值显示出卓越的长期稳定性。PVdF壳层中多个PI纳米原纤维作为热稳定聚合物与作为电解质兼容聚合物之间的适当结构和协同效应,是LIB具有优异热性能和长期稳定性的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d887/5105080/ec92ee5ca056/srep36977-f1.jpg

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