JOURNAL ARTICLE

Anisotropic Polyimide/Cellulose Nanofibril Composite Aerogels for Thermal Insulation and Flame Retardancy

Ruina ZhengJiayu HuZhichao LinGuozhang WuYu Lin

Year: 2023 Journal:   ACS Applied Polymer Materials Vol: 5 (6)Pages: 4180-4189   Publisher: American Chemical Society

Abstract

In this study, we report a series of lightweight, anisotropic polyimide/cellulose nanofibril (PI/CNF) composite aerogels with outstanding thermal insulation and flame retardancy via unidirectional drying and freeze drying methods. Along the axial direction, PI/CNF composite aerogels exhibit an arranged tube-like structure in parallel to ice crystal growth, thus providing superior mechanical properties. Conversely, the composite aerogels show a honeycomb-like pore structure along the radial direction, exhibiting excellent elastic properties. More importantly, the addition of CNF endows the composite aerogels with low thermal conductivity along the radial direction. The surface temperature of the composite aerogels with a thickness of 15 mm is 70% lower than that of hot stage annealing at 180 °C for 60 min. Furthermore, the composite aerogels show flame retardant and self-extinguishing performance in the combustion experiment. Therefore, the anisotropic PI/CNF composite aerogels with thermal insulation and flame retardancy are promising for expanding potential applications in aerospace fields.

Keywords:
Materials science Composite material Composite number Polyimide Anisotropy Thermal conductivity Thermal insulation Aerogel Cellulose Thermal Chemical engineering

Metrics

31
Cited By
4.38
FWCI (Field Weighted Citation Impact)
64
Refs
0.93
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced Cellulose Research Studies
Physical Sciences →  Materials Science →  Biomaterials
Aerogels and thermal insulation
Physical Sciences →  Chemistry →  Spectroscopy
Flame retardant materials and properties
Physical Sciences →  Materials Science →  Polymers and Plastics
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