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Lightweight Polyimide Foam-Derived Carbon Foam with Anisotropic Porous Structure for Efficient Hydrophobicity and
Long Ni1, Xiaoting Liao1, Ke Yang1
1State Key Laboratory of Advanced Polymer Materials, Polymer Research Institute, Sichuan University, Chengdu 610065, China.
Abstract:
In this work, the fabrication of lightweight, hydrophobic, and high-temperature thermal insulative polyimide foam-derived carbon foams (PICFs) with an anisotropic pore structure was proposed. First, polyester ammonium salt (PEAS) precursor powders with different component moieties were synthesized by a copolymerization method. Then, the PEAS powders were subjected to microwave-assisted foaming, thermal imidization, and carbonization processes to prepare PICFs. The "bottom-up" directional foaming behavior and high carbon yield of polyimide foams (PIFs) constructed regular honeycomb-like pores in the vertical direction and aligned ellipsoidal strip-like pores in the horizontal direction of the PICFs. Results showed that the PICFs possessed low density (20-40 kg/m3), small pore size (128 μm), favorable mechanical properties (compressive strength of 86.01 kPa) and excellent thermal stability (T5% > 800 °C). By combining micro/nano porous structures with reduced pore diameters, the PICFs exhibited excellent hydrophobicity, with a water contact angle of up to 128.8° in the vertical direction and 121.2° in the horizontal direction. The PICFs demonstrated superior thermal insulation properties at both room temperature and high temperatures, with thermal conductivity values ranging from 0.0335 to 0.1887 W/(m·K) between 25 and 1000 °C. Thus, lightweight, hydrophobic, and high-temperature thermal insulative PICFs were successfully prepared using the proposed method, which has potential applications in high-end engineering fields such as aerospace, transportation, microelectronics, and nuclear energy sectors, among others.
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