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首页> 外文期刊>Composites >Design of bi-modal pore structure polyarylene ether nitrile/SiO_2 foams with ultralow-k dielectric and wave transparent properties by supercritical carbon dioxide
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Design of bi-modal pore structure polyarylene ether nitrile/SiO_2 foams with ultralow-k dielectric and wave transparent properties by supercritical carbon dioxide

机译:利用超临界二氧化碳设计具有超低k介电和波透过性的双峰孔结构聚亚芳基醚腈/ SiO_2泡沫

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摘要

The introduction of the pores into polymers is an efficient method to prepare the materials with low dielectric constant (6) and low dielectric loss tangent (tan 5). Herein, low-weight polyarylene ether nitrile (PEN)/SiO2 foams with bi-modal pore structure were prepared via supercritical carbon dioxide batch foaming. The effects of SiO2 as heterogeneous nucleation on the dielectric properties, wave-transparent properties, thermal conductivity properties and mechanical properties of PEN/SiO2 foams have been investigated. Compared with PEN/SiO2 films, PEN/SiO2 foams showed excellent properties, which was most probably due to their uniform bi-modal pore morphology. As cell density and the SiO2 weight content was increased, epsilon and tans delta of the PEN/SiO2 foams decreased to 1.71 and 0.0047, respectively. The PEN/SiO2 foams exhibited ultra-low dielectric constant, showing low temperature and stabilization dielectric properties from -100 degrees C to 120 degrees C. Furthermore, the wave transparent properties of PEN/SiO2 films and foams, which are required for wave-transparent application, were also investigated. The thermal insulating properties of PEN/SiO2 foams were remarkably improved after the pores and SiO2 fillers were introduced into the PEN polymer, with thermal conductivity reaching as low as 0.073 W/m K. PEN/SiO2 foams showed markedly increased elongation at the break, compared with PEN/SiO2 films, whereas tensile strength > 50 MPa. The excellent properties of PEN/SiO2 foams indicated their potential as dielectric materials for microelectronics and wave-transparent materials for aerospace technology.
机译:将孔引入聚合物是制备具有低介电常数(6)和低介电损耗角正切(tan 5)的材料的有效方法。在此,通过超临界二氧化碳间歇发泡制备具有双峰孔结构的低重量聚亚芳基醚腈(PEN)/ SiO2泡沫。研究了SiO2作为非均相成核剂对PEN / SiO2泡沫的介电性能,透波性能,导热性能和机械性能的影响。与PEN / SiO2薄膜相比,PEN / SiO2泡沫具有优异的性能,这很可能是由于其均匀的双峰孔隙形态。随着泡孔密度和SiO2重量含量的增加,PEN / SiO2泡沫的ε和tansδ分别降至1.71和0.0047。 PEN / SiO2泡沫表现出超低的介电常数,在-100摄氏度至120摄氏度之间表现出低温和稳定的介电性能。此外,PEN / SiO2薄膜和泡沫的波透明性是波透明的应用,也进行了调查。将孔和SiO2填料引入PEN聚合物后,PEN / SiO2泡沫的隔热性能得到显着改善,导热系数低至0.073 W / mK。PEN/ SiO2泡沫的断裂伸长率显着提高,与PEN / SiO2薄膜相比,拉伸强度> 50 MPa。 PEN / SiO2泡沫的优异性能表明它们作为微电子介电材料和航空航天技术的波透明材料的潜力。

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  • 来源
    《Composites》 |2019年第15期|106915.1-106915.9|共9页
  • 作者单位

    Univ Elect Sci & Technol China Sch Mat & Energy Res Branch Adv Funct Mat Chengdu 610054 Sichuan Peoples R China|China Acad Engn Phys Inst Chem Mat Mianyang 621900 Sichuan Peoples R China;

    Univ Elect Sci & Technol China Sch Mat & Energy Res Branch Adv Funct Mat Chengdu 610054 Sichuan Peoples R China;

    China Acad Engn Phys Inst Chem Mat Mianyang 621900 Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polyarylene ether nitriles; Foam; Silicon dioxide; Ultra-low dielectric constant; Wave-transparent;

    机译:聚亚芳基醚腈;泡沫;二氧化硅;超低介电常数;波透明;

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