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芳纶氢键提高聚醚酰亚胺共混物的高温电容性能。

Hydrogen Bonding of Aramid Boosts High-Temperature Capacitive Properties of Polyetherimide Blends.

机构信息

National and Local Joint Engineering Laboratory for Synthetic Technology of High-Performance Polymer, Jilin University, Changchun, Jilin130012, China.

College of Materials Science and Engineering, Jilin University, Changchun, Jilin130012, China.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 15;15(6):8471-8479. doi: 10.1021/acsami.2c20558. Epub 2023 Feb 1.

Abstract

Polyetherimide (PEI) is the state-of-the-art commercial high-temperature polymer dielectric with excellent thermal and chemical stability and relatively high high-temperature capacitive energy storage properties. The rotation of the dipoles in the PEI chains brings the β-relaxation which seriously increases the leakage current and decreases the charge-discharge efficiency. In this work, hydrogen bonds have been introduced to limit the dipole rotation of PEI by blending aramids [1,4-poly(ether fluoromethyl naphthalene amide), PNFA] into the PEI matrix. By introducing 10 wt % PNFA, the β-relaxation of the blend has been significantly reduced which could be observed from the dielectric spectrum. To explore the mechanism of limited β-relaxation, we analyze the hydrogen bonds in the blend films by infrared spectroscopy and found that the maximum content of hydrogen-bonded carbonyl formed between PNFA and PEI chains was 14.3% when the content of PNFA was 30 wt %. The content of hydrogen bonds formed between PNFA and PEI was positively correlated with the energy storage performance of the blends. The maximum discharged energy density with an efficiency above 90% of the blend film with 30 wt % PNFA reaches 4.1 J cm at 150 °C, which is about 350% higher than that of pristine PEI. This work shows that composing hydrogen bonds by the blending method could be a viable strategy for enhancing the high-temperature energy storage performance of polymer dielectrics, which could be achieved by large-scale preparation and has feasible industrial production prospects.

摘要

聚醚酰亚胺(PEI)是一种先进的商业高温聚合物电介质,具有优异的热稳定性和化学稳定性,以及相对较高的高温电容储能性能。PEI 链中的偶极子旋转带来了 β 松弛,这严重增加了漏电流并降低了充放电效率。在这项工作中,通过将芳纶[1,4-聚(醚氟甲基萘酰胺),PNFA]混入 PEI 基质中,引入氢键来限制 PEI 的偶极子旋转。通过引入 10wt%的 PNFA,共混物的 β 松弛明显降低,可以从介电谱中观察到。为了探究限制 β 松弛的机理,我们通过红外光谱分析了共混膜中的氢键,发现当 PNFA 的含量为 30wt%时,PNFA 和 PEI 链之间形成的氢键羰基的最大含量为 14.3%。PNFA 和 PEI 之间形成的氢键含量与共混物的储能性能呈正相关。在 150°C 下,30wt%PNFA 的共混膜的能量密度达到 4.1J/cm,效率超过 90%,是原始 PEI 的 350%左右。这项工作表明,通过共混法形成氢键是增强聚合物电介质高温储能性能的一种可行策略,可以通过大规模制备实现,具有可行的工业生产前景。

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