Suzhou Institute of Nano-Tech and Nano-Bionics (SINANO), Chinese Academy of Sciences, Suzhou 215123, PR China.
Suzhou Institute of Nano-Tech and Nano-Bionics (SINANO), Chinese Academy of Sciences, Suzhou 215123, PR China.
J Colloid Interface Sci. 2018 Apr 1;515:1-9. doi: 10.1016/j.jcis.2018.01.010. Epub 2018 Jan 3.
In this work, we developed a new method to synthesize silica aerogel microspheres via ambient pressure drying (APD) process without applying any surfactants and mechanical stirring. An ethanol solution of partially hydrolyzed, partially condensed silica (CS) was used as precursor in the synthesis, the water-repellent n-Heptane as solvent, while the water-soluble ammonia gas (NH) as catalyst. After a fast sol-gel process and APD process, aerogel microspheres were obtained in the form of white powder with packing density ranged from 62 mg/cm to 230 mg/cm for different samples. The SEM images exhibited fine spherical morphology for these aerogel microparticles, and their statistical average particle diameter ranged from 0.8 μm to 1.5 μm. Besides, according to the analysis of N adsorption-desorption isotherms, the BET surface area of these aerogel microspheres was in the range of 800-960 m/g, and a considerable volume of micropores was detected along with the abundant mesospores in these microspheres, which was further confirmed by the TEM image and SAXS curve. Based on the very limited solubility of NH in the reaction system, a non-emulsion formation mechanism was proposed to illustrate the formation of these aerogel microspheres.
在这项工作中,我们开发了一种新的方法,通过常压干燥(APD)工艺合成二氧化硅气凝胶微球,而无需使用任何表面活性剂和机械搅拌。部分水解、部分缩合的硅酸钠(CS)的乙醇溶液用作合成中的前体,疏水性正庚烷作为溶剂,而水溶性氨(NH)气体作为催化剂。在快速溶胶-凝胶过程和 APD 过程之后,以白色粉末的形式获得气凝胶微球,对于不同的样品,堆积密度范围为 62mg/cm 至 230mg/cm。SEM 图像显示这些气凝胶微球具有精细的球形形态,其统计平均粒径范围为 0.8μm 至 1.5μm。此外,根据 N 吸附-解吸等温线的分析,这些气凝胶微球的 BET 比表面积在 800-960m/g 范围内,并且在这些微球中检测到大量的微孔和丰富的介孔,这进一步通过 TEM 图像和 SAXS 曲线得到证实。基于 NH 在反应体系中非常有限的溶解度,提出了一种非乳液形成机制来解释这些气凝胶微球的形成。