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Porous Polyimide-Silica Composite: A New Thermal Resistant Flexible Material

机译:多孔聚酰亚胺 - 二氧化硅复合材料:一种新的热阻柔性材料

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We developed a new highly porous polyimide (PI) -silica composite with high flexibility, mechanical strength, and heat resistance. The composite was prepared by a new process consisting of (1) phase separation of a mixture of PI precursor (polyamic acid), solvent, and silicon alkoxide, induced by high-pressure CO_2 (40 °C, 20 MPa), (2) silicate formation by sol-gel reaction, and (3) supercritical CO_2 extraction of the solvent. The composite had a bimodal porous structure with micropores of 10-30 μm and nanopores of ~50 nm. In the PI matrix, silica nanoparticles (< 100 nm in diameter) were highly dispersed. Porosity of the composite was 78%, which is higher than that of conventional porous PI prepared by physical foaming technique. Relative dielectric constant of the material was lower than 1.4 at 1 MHz. The porous PI-silica composite sheet was flexible enough to be folded without cracking. Notably, the Young's modulus (0.80 GPa) and the onset decomposition temperature (600 °C) of the PI-silica composite were higher than those of conventional porous PI with similar porosity, respectively. The porous PI-silica composite is promising as a flexible thermal insulator for high-temperature use and as a thermal resistant low-k material.
机译:我们开发了一种具有高柔韧性,机械强度和耐热性的新型高度多孔聚酰亚胺(PI) - 硅基复合材料。通过由高压CO_2(40℃,20MPa)诱导的PI前体(聚酰胺酸),溶剂和硅醇盐的混合物组成的新方法(1)分离的新方法制备。通过高压CO_2(40℃,20MPa),(2)通过溶胶 - 凝胶反应的硅酸盐形成,和(3)超临界CO_2溶剂萃取溶剂。复合材料具有双峰多孔结构,微孔为10-30μm,纳米孔〜50nm。在PI基质中,高度分散在pi基质中,二氧化硅纳米颗粒(直径为<100nm)。复合材料的孔隙率为78%,其高于通过物理发泡技术制备的常规多孔PI。材料的相对介电常数低于1.4,在1MHz下。多孔Pi-二氧化硅复合片材足够柔性以折叠而不裂化。值得注意的是,杨氏模量(0.80GPa)和Pi-二氧化硅复合材料的起始分解温度(600℃)分别高于具有相似孔隙率的常规多孔PI。多孔PI-二氧化硅复合材料具有柔性隔热器,用于高温使用和作为热阻低k材料。

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