Guo Jinjing, Luo Kaiqiang, Zou Wenqi, Xu Jun, Guo Baohua
Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.
Materials (Basel). 2024 May 30;17(11):2641. doi: 10.3390/ma17112641.
Ambient pressure drying (APD) of silica aerogels has emerged as an attractive method adapting to large-scale production. Spring-back is a unique phenomenon during APD of silica aerogels with volume expansion after its shrinkage under capillary force. We attribute the intense spring-back at elevated drying temperatures to a dense structure formed on the surface and the formation of positive internal pressure. Furthermore, an APD-assisted foaming method with an in situ introduction of NHHCO was proposed. NHHCO decomposing at drying temperatures hastened the emergence of positive pressure, thereby increasing the expansion volume. Compared to the previous method, the porosity of silica aerogel increased from 82.2% to 92.6%, and mesopore volume from 1.79 cm g to 4.54 cm g. By adjusting the amount of the silicon source, silica aerogels prepared by the APD-assisted foaming method generated higher volume expansion and lower thermal conductivity. After calcination to remove undecomposed ammonium salts, the hydrophobic silica aerogel with a density of 0.112 g cm reached a mesopore volume of 5.07 cm g and a thermal conductivity of 18.9 mW m·K. This strategy not only improves the thermal insulation properties, but also offers a significant advancement in tailoring silica aerogels with specific porosity and mesopore volume for various applications.
二氧化硅气凝胶的常压干燥(APD)已成为一种适用于大规模生产的有吸引力的方法。回弹是二氧化硅气凝胶常压干燥过程中的一种独特现象,即在毛细力作用下收缩后体积膨胀。我们将干燥温度升高时强烈的回弹归因于表面形成的致密结构和正内部压力的形成。此外,还提出了一种原位引入NHHCO的APD辅助发泡方法。NHHCO在干燥温度下分解加速了正压的出现,从而增加了膨胀体积。与之前的方法相比,二氧化硅气凝胶的孔隙率从82.2%提高到92.6%,中孔体积从1.79 cm³/g增加到4.54 cm³/g。通过调整硅源的量,采用APD辅助发泡方法制备的二氧化硅气凝胶产生了更高的体积膨胀和更低的热导率。在煅烧以去除未分解的铵盐后,密度为0.112 g/cm³的疏水二氧化硅气凝胶的中孔体积达到5.07 cm³/g,热导率为18.9 mW/(m·K)。这种策略不仅提高了隔热性能,而且在为各种应用定制具有特定孔隙率和中孔体积的二氧化硅气凝胶方面取得了重大进展。