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聚甲基倍半硅氧烷微球诱导聚合物电介质的高温储能显著增强。

Remarkably boosted high-temperature energy storage of a polymer dielectric induced by polymethylsesquioxane microspheres.

作者信息

Chang Zelong, Lei Li, Zhu Linwei, Quan Yang, Ren Zengliang, Qian Yihui, Dastan Davoud, Shi Zhicheng

机构信息

School of Materials Science and Engineering, Ocean University of China, Qingdao 266100, China.

Department of Materials Science and Engineering Cornell University, Ithaca, NY, 14850, USA.

出版信息

Mater Horiz. 2025 Jan 2;12(1):284-292. doi: 10.1039/d4mh01305k.

Abstract

Polymer dielectrics are the key materials in next-generation electrical power systems. However, they usually suffer from dramatic deterioration of capacitive performance at high temperatures. In this work, we demonstrate that polymethylsesquioxane (PMSQ) microspheres with a unique organic-inorganic hybrid structure can remarkably enhance the energy storage performance of a typical high-temperature dielectric polymer polyetherimide (PEI). Compared with traditional ceramic fillers, there exists -CH on the surface of PMSQ microspheres, which results in good compatibility between PMSQ and PEI. In addition, the PMSQ microspheres with excellent insulating properties can effectively block the charge transport, yielding significantly enhanced breakdown and energy storage performance. Consequently, the PEI based composite film with 5 wt% PMSQ microspheres exhibits ultrahigh energy storage densities of 12.83 J cm and 9.40 J cm with an efficiency () above 90% at 150 °C and 200 °C, respectively, which are 10.5 and 50.5 times those of the pure PEI film. This work demonstrates that microspheres with an organic-inorganic hybrid structure are excellent candidates for enhancing the high-temperature performance of polymer dielectrics, and these PMSQ/PEI composite films have huge potential for application in high-temperature film capacitors.

摘要

聚合物电介质是下一代电力系统中的关键材料。然而,它们通常在高温下电容性能会急剧下降。在这项工作中,我们证明了具有独特有机-无机杂化结构的聚甲基倍半硅氧烷(PMSQ)微球可以显著提高典型高温介电聚合物聚醚酰亚胺(PEI)的储能性能。与传统陶瓷填料相比,PMSQ微球表面存在-CH,这使得PMSQ与PEI之间具有良好的相容性。此外,具有优异绝缘性能的PMSQ微球可以有效地阻止电荷传输,从而显著提高击穿和储能性能。因此,含有5 wt% PMSQ微球的PEI基复合薄膜在150℃和200℃时分别表现出12.83 J/cm³和9.40 J/cm³的超高储能密度,效率(η)高于90%,分别是纯PEI薄膜的10.5倍和50.5倍。这项工作表明,具有有机-无机杂化结构的微球是提高聚合物电介质高温性能的优异候选材料,这些PMSQ/PEI复合薄膜在高温薄膜电容器中具有巨大的应用潜力。

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