@inproceedings{be9124e33a6e410c921d0327592d00aa,
title = "Morphology and energy storage properties of nano-ZrO2/Polypropylene composite",
abstract = "In the present study, we introduced the nano-ZrO2 into the polypropylene (PP) matrix and systematically studied its effect on the morphology and energy storage properties of the obtained nano-composites. Nano-ZrO2 showed good dispersion in PP matrix and suppressed the formation of β-crystal, modifying the microstructure and decreasing the crystallinity to a small extent. The DC breakdown test results show that both the scaled parameter and shape parameter of Weibull distribution were improved by nano-ZrO2 doping, and at the same time the dielectric constant also increased comparing with neat PP. Consequently, the energy density of nano-ZrO2/PP composites was enhanced to 1.47 J/cm3 with 0.5 wt\% nano-ZrO2 doped, while the losses kept the low value same as neat PP. This work provides a promising candidate of PP nano-composites for industry practical application due to the combination of enhanced energy density and low losses.",
keywords = "dielectric, energy storage, nanocomposite, polypropylene",
author = "Lu Cheng and Wenfeng Liu and Xiaowei Liu and Chengming Liu and Shengtao Li",
note = "Publisher Copyright: {\textcopyright} 2018 IEEE.; 2nd IEEE International Conference on Dielectrics, ICD 2018 ; Conference date: 01-07-2018 Through 05-07-2018",
year = "2018",
month = sep,
day = "19",
doi = "10.1109/ICD.2018.8514802",
language = "英语",
series = "2018 IEEE 2nd International Conference on Dielectrics, ICD 2018",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
booktitle = "2018 IEEE 2nd International Conference on Dielectrics, ICD 2018",
}