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超轻、隔热、可压缩聚酰亚胺纤维组装海绵。

Ultralight, Thermally Insulating, Compressible Polyimide Fiber Assembled Sponges.

机构信息

Macromolecular Chemistry, Bavarian Polymer Institute, University of Bayreuth , Universitätsstraße 30, 95440 Bayreuth, Germany.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 20;9(37):32308-32315. doi: 10.1021/acsami.7b11045. Epub 2017 Sep 8.

Abstract

Tunable density, thermally and mechanically stable, elastic, and thermally insulating sponges are required for demanding applications. Hierarchically structured sponges with bimodal interconnected pores, porosity more than 99%, and tunable densities (between 7.6 and 10.1 mg/cm) are reported using polyimide (PI) as high temperature stable polymer. The sponges are made by freeze-drying a dispersion of short PI fibers and precursor polymer, poly(amic acid) (PAA). The concept of "self-gluing" the fibrous network skeleton of PI during sponge formation was applied to achieve mechanical stability without sacrificing the thermal properties. The sponges showed initial degradation above 400 and 500 °C in air and nitrogen, respectively. They have low thermal conductivity of 0.026 W/mK and thermal diffusivity of 1.009 mm/s for a density of 10.1 mg/cm. The sponges are compressible for at least 10 000 cycles and good thermal insulators even at high compressions. These fibrous PI sponges are promising candidates for potential applications in thermal insulation, lightweight construction, high-temperature filtration, sensors, and catalyst carrier for high-temperature reactions.

摘要

需要具有可调密度、热稳定性和机械稳定性、弹性和隔热性能的海绵,以满足苛刻的应用需求。本文报道了一种具有双模态互连孔、孔隙率超过 99%和可调密度(7.6-10.1mg/cm)的分级结构海绵,所用的高温稳定聚合物为聚酰亚胺(PI)。该海绵是通过冷冻干燥短 PI 纤维和先驱体聚合物聚酰胺酸(PAA)的分散体制备而成。在海绵形成过程中,采用“自胶合”PI 纤维网络骨架的概念,在不牺牲热性能的情况下实现了机械稳定性。在空气和氮气中,分别在 400 和 500°C 以上开始降解。其密度为 10.1mg/cm 时,热导率为 0.026 W/mK,热扩散率为 1.009mm/s。这种纤维状 PI 海绵可压缩至少 10000 次,即使在高压缩下也具有良好的隔热性能。这些纤维状 PI 海绵有望在隔热、轻质结构、高温过滤、传感器以及高温反应的催化剂载体等方面得到应用。

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