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Crystallization and Dielectric Properties of MWCNT /Poly(1-Butene) Composite Films by a Solution Casting Method

机译:溶液浇铸法制备MWCNT /聚(1-丁烯)复合薄膜的晶化和介电性能

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摘要

In this work, poly(1-butene) (PB-1) composite films with multi-walled carbon nanotubes (MWCNT) were prepared by a solution casting method. The relationship between the dielectric properties and the crystal transformation process of the films was investigated. It was indicated that there were two crystal forms of I and II of PB-1 during the solution crystallization process. With the prolongation of the phase transition time, form II was converted into form I. The addition of the conductive filler (MWCNT) accelerated the rate of phase transformation and changed the nucleation mode of PB-1. The presence of crystal form I in the system increased the breakdown strength and the dielectric constant of the films and reduced the dielectric loss, with better stability. In addition, the dielectric constant and the dielectric loss of the MWCNT/PB-1 composite films increased with the addition of MWCNT, due to the interfacial polarization between MWCNT and PB-1 matrix. When the mass fraction of the MWCNT was 1.0%, the composite film had a dielectric constant of 43.9 at 25 °C and 10 Hz, which was 20 times that of the original film.
机译:在这项工作中,通过溶液浇铸法制备了具有多壁碳纳米管(MWCNT)的聚(1-丁烯)(PB-1)复合膜。研究了介电性能与薄膜的晶体转变过程之间的关系。结果表明,在溶液结晶过程中,PB-1的I和II有两种晶型。随着相变时间的延长,晶型II转变为晶型I。导电填料(MWCNT)的加入加快了相变速率并改变了PB-1的成核模式。系统中晶型I的存在增加了薄膜的击穿强度和介电常数,并降低了介电损耗,具有更好的稳定性。另外,由于MWCNT和PB-1基体之间的界面极化,MWCNT / PB-1复合膜的介电常数和介电损耗随MWCNT的增加而增加。当MWCNT的质量分数为1.0%时,该复合膜在25℃和10Hz下具有43.9的介电常数,这是原始膜的介电常数的20倍。

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