作者
Shelley D Rawson, Vildan Bayram, Samuel A McDonald, Pei Yang, Loic Courtois, Yi Guo, Jiaqi Xu, Timothy L Burnett, Suelen Barg, Philip J Withers
发表日期
2022/2/8
期刊
ACS nano
卷号
16
期号
2
页码范围
1896-1908
出版商
American Chemical Society
简介
Aerogels are attracting increasing interest due to their functional properties, such as lightweight and high porosity, which make them promising materials for energy storage and advanced composites. Compressive deformation allows the nano- and microstructure of lamellar freeze-cast aerogels to be tailored toward the aforementioned applications, where a 3D nanostructure of closely spaced, aligned sheets is desired. Quantitatively characterizing their microstructural evolution during compression is needed to allow optimization of manufacturing, understand in-service structural changes, and determine how aerogel structure relates to functional properties. Herein we have developed methods to quantitatively analyze lamellar aerogel domains, sheet spacing, and sheet orientation in 3D and to track their evolution as a function of increasing compression through synchrotron phase contrast X-ray microcomputed …
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