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Synthesis and Properties of Polyimide Silica Nanocomposite Film with High Transparent and Radiation Resistance

机译:具有高透明和辐射抗性的聚酰亚胺二氧化硅纳米复合膜的合成与性能

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摘要

In order to prepare flexible glass cover sheet materials suitable for space solar cells, fluorinated diamine 2,2’-bistrifluoromethyl benzidine (TFDB) and fluorinated dianhydride 4,4’ (hexafluoroisopropyl) diphthalic dianhydride (6FDA) as the monomer, polyimide (PI)/SiO2 composite film was synthesized by in situ polymerization, and the influence of coupling agent and SiO2 nanoparticle content on the film structure and properties was studied. The results show that PI synthesized from fluorine-containing monomers has better light transmittance, and the highest transmittance can reach 91.4%. The average visible light transmittance of the composite film decreases with the increase of SiO2 content, and the transmittance of the film decreases less in the high-wavelength region and greatly decreases in the low-wavelength region. The tensile strength and elastic modulus of PI/SiO2 composite film increase with the increase of SiO2 content, first increase and then decrease, reaching the maximum when the content is 10%; while the elongation at break of the composite film gradually increases with the increase of SiO2 content reduce. The thermal stability of PI/SiO2 composite film increases with the increase of SiO2 content. The doping of nano-SiO2 significantly suppresses the influence of irradiation on the mechanical properties of the film.
机译:为了制备适用于太阳能电池的柔性玻璃盖板材料,氟化二胺2,2'-双氟甲基苯并丁丁(TFDB)和氟化二酐4,4'(六氟异丙基)二神经二酐(6FDA)作为单体,聚酰亚胺(PI)通过原位聚合合成/ SiO 2复合膜,研究了偶联剂和SiO2纳米粒子含量对膜结构和性能的影响。结果表明,由含氟单体合成的PI具有更好的透光率,并且最高透射率可达91.4%。随着SiO 2含量的增加,复合膜的平均可见光透射率降低,并且在高波长区域中膜的透射率降低,并且在低波长区域中大大降低。随着SiO 2含量的增加,Pi / SiO2复合膜的拉伸强度和弹性模量随,首先增加,然后减少,达到含量为10%的最大值;虽然复合膜断裂的伸长率随着SiO 2含量的增加而逐渐增加。随着SiO 2含量的增加,Pi / SiO2复合膜的热稳定性增加。纳米SiO2的掺杂显着抑制了照射对薄膜力学性能的影响。

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