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Rapid and inexpensive synthesis of liter-scale SiC aerogels

Engineering and Technology

Rapid and inexpensive synthesis of liter-scale SiC aerogels

L. Han, S. Chen, et al.

Discover a groundbreaking method for synthesizing SiC aerogels at a remarkable throughput of ~16 L min⁻¹, as unveiled by Lujia Han and colleagues. This innovative process, featuring over 1000% volume expansion, offers an energy-efficient, cost-effective solution, paving the way for large-scale applications with exceptional thermo-mechanical properties.... show more
Abstract
Ceramic aerogels are promising materials for thermal insulation and protection under harsh environments. Yet current synthesis methods fail to provide an energy-, time-, and cost-effective route for high-throughput production and large-scale applications, especially for non-oxide ceramic aerogels. Here we reported a way to synthesize SiC aerogels within seconds and over liter scale, with a demonstrated throughput of ~16 L min−1 in a typical lab experiment. The key lies in renovated combustion synthesis and a fast expansion from powder reactants to aerogel products over 1000% in volume. The synthesis process is self-sustainable and requires minimal energy input. The product is very cheap, with an estimated price of ~$0.7 L−1 (~$7 kg−1). The obtained SiC aerogels have excellent thermo-mechanical properties, including low thermal conductivity, high elasticity, and damage tolerance. Our invention not only offers a practical pathway for large-scale applications of ceramic aerogels, but also calls for rethinking of combustion synthesis in one-step conversion from raw chemicals to bulk products ready for practical applications.
Publisher
Nature Communications
Published On
Aug 13, 2024
Authors
Lujia Han, Shile Chen, Honghua Li, Yanhao Dong, Chang-An Wang, Jiangtao Li
Tags
SiC aerogels
combustion synthesis
energy-efficient
volume expansion
thermo-mechanical properties
cost-effective
large-scale applications
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