Xu Lei, Sun Guanhua, Chen Jiahui, Wu Xiaoxu, Hu Min, Zhou Fang, Li Zhi
Shenyang Fire Science and Technology Research Institute of MEM, 218-20 Wendg Road, Shenyang 110034, China.
School of Resource and Safety Engineering, Central South University, Changsha 410083, China.
Gels. 2024 Dec 20;10(12):844. doi: 10.3390/gels10120844.
This research enhances the thermal safety of hydrophobic silica aerogel (HSA) by integrating layered double oxides (LDOs). XRD and FTIR confirm that the introduction of LDOs does not affect the formation of SA. The LDO/SA composites demonstrate a low density (0.14-0.16 g/cm), low thermal conductivity (23.28-28.72 mW/(m·K)), high porosity (93.4-96.1%), and a high surface area (899.2-1006.4 m/g). The TG-DSC results reveal that LDO/SA shows enhanced thermal stability, with increases of 49 °C in the decomposition onset temperature and 47.4 °C in the peak decomposition temperature. The gross calorific value of LDO/SA-15% (with 15 wt% LDO) exhibits a 23.9% reduction in comparison to that of pure SA. The decrease in gross calorific value, along with improved thermal stability, indicates a boost in the thermal safety characteristics of the LDO/SA composites. This study demonstrates that incorporating LDOs enhances the thermal safety of HSA, while preserving its superior performance, thus broadening its potential applications in thermal insulation.
本研究通过整合层状双金属氧化物(LDO)提高了疏水二氧化硅气凝胶(HSA)的热安全性。X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)证实,LDO的引入不影响气凝胶(SA)的形成。LDO/SA复合材料具有低密度(0.14 - 0.16 g/cm³)、低导热率(23.28 - 28.72 mW/(m·K))、高孔隙率(93.4 - 96.1%)和高比表面积(899.2 - 1006.4 m²/g)。热重 - 差示扫描量热(TG - DSC)结果表明,LDO/SA表现出增强的热稳定性,分解起始温度提高了49℃,峰值分解温度提高了47.4℃。LDO/SA - 15%(含15 wt% LDO)的总热值与纯SA相比降低了23.9%。总热值的降低以及热稳定性的提高表明LDO/SA复合材料的热安全特性得到了提升。本研究表明,加入LDO可提高HSA的热安全性,同时保持其优异性能,从而拓宽了其在隔热领域的潜在应用。