Synthesis of superhydrophobic crack-free monolithic silica aerogels via a vacuum freeze-drying process

IF 3.8 3区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS Journal of the American Ceramic Society Pub Date : 2025-02-12 DOI:10.1111/jace.20401
Yu Ma, Zhenting Zhu, Huangshuai Zhang, Mohamed Kallel, Zihao Yang, Juanna Ren, Salah M. El-Bahy, Zhe Chen, Zeinhom M. El-Bahy, Hang Zhang, Zhanhu Guo
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Abstract

Freeze-drying is a promising method for drying gels, but it is considered incapable of preparing bulk inorganic oxide aerogels. Herein, using tert-butanol/water co-solvent as the freeze-drying solvent, large-size crack-free monolithic silica aerogels with different absolute ethyl alcohol to tetraethylorthosilicate molar ratios were successfully synthesized via a vacuum freeze-drying process. Superhydrophobicity was then obtained through an efficient chemical vapor deposition hydrophobic modification process. As the molar ratio increased from 8 to 16, the density, linear shrinkage, specific surface area (SSA), and mechanical properties decreased, while the thermal conductivity decreased first and then increased. The freeze-dried silica aerogels show the lowest density of 0.078 g/cm3, the lowest linear shrinkage of 4.6%, the highest SSA of 962 m2/g, the highest Young's modulus of 904.3 kPa, and a lowest thermal conductivity of 0.026 W/(m·K). Despite the formed fine ice crystals compressing the gel skeleton to some extent in the freeze-drying process, the developed mesoporous skeleton structure is basically preserved, which ensures excellent thermal insulation and mechanical performance. This study demonstrates that high-quality monolithic inorganic oxide aerogels can be effectively prepared by the freeze-drying method, which provides them with another efficient drying method independent of supercritical fluid drying and ambient pressure drying methods.

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真空冷冻干燥法制备超疏水无裂纹硅胶整体气凝胶
冷冻干燥是一种很有前途的凝胶干燥方法,但被认为不能制备大块无机氧化物气凝胶。本文以叔丁醇/水共溶剂为冷冻干燥溶剂,采用真空冷冻干燥工艺成功合成了不同无水乙醇与四乙基硅酸摩尔比的大尺寸无裂纹硅胶整体气凝胶。然后通过高效的化学气相沉积疏水改性工艺获得了超疏水性。当摩尔比从8增加到16时,材料的密度、线收缩率、比表面积(SSA)和力学性能下降,导热系数先减小后增大。冻干后的二氧化硅气凝胶密度最低为0.078 g/cm3,线收缩率最低为4.6%,SSA最高为962 m2/g,杨氏模量最高为904.3 kPa,导热系数最低为0.026 W/(m·K)。尽管在冷冻干燥过程中形成的细小冰晶在一定程度上压缩了凝胶骨架,但基本保留了发育好的介孔骨架结构,保证了优异的保温性能和力学性能。本研究表明,冷冻干燥方法可以有效制备高质量的整体无机氧化物气凝胶,为其提供了一种独立于超临界流体干燥和环境压力干燥方法之外的高效干燥方法。
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文献相关原料
公司名称
产品信息
阿拉丁
distilled water (H2O)
阿拉丁
tert-butyl alcohol
阿拉丁
Ammonium acetate
阿拉丁
ammonia solution
阿拉丁
N, N-dimethylformamide (DMF)
阿拉丁
dimethyldiethoxysilane (DMDES)
阿拉丁
glacial acetic acid (HOAc)
阿拉丁
absolute ethyl alcohol (EtOH)
阿拉丁
Tetraethylorthosilicate (TEOS)
来源期刊
Journal of the American Ceramic Society
Journal of the American Ceramic Society 工程技术-材料科学:硅酸盐
CiteScore
7.50
自引率
7.70%
发文量
590
审稿时长
2.1 months
期刊介绍: The Journal of the American Ceramic Society contains records of original research that provide insight into or describe the science of ceramic and glass materials and composites based on ceramics and glasses. These papers include reports on discovery, characterization, and analysis of new inorganic, non-metallic materials; synthesis methods; phase relationships; processing approaches; microstructure-property relationships; and functionalities. Of great interest are works that support understanding founded on fundamental principles using experimental, theoretical, or computational methods or combinations of those approaches. All the published papers must be of enduring value and relevant to the science of ceramics and glasses or composites based on those materials. Papers on fundamental ceramic and glass science are welcome including those in the following areas: Enabling materials for grand challenges[...] Materials design, selection, synthesis and processing methods[...] Characterization of compositions, structures, defects, and properties along with new methods [...] Mechanisms, Theory, Modeling, and Simulation[...] JACerS accepts submissions of full-length Articles reporting original research, in-depth Feature Articles, Reviews of the state-of-the-art with compelling analysis, and Rapid Communications which are short papers with sufficient novelty or impact to justify swift publication.
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