材料科学
气凝胶
宽带
吸收(声学)
声音(地理)
铸造
化学工程
复合材料
光学
声学
物理
工程类
作者
Xiaohua Li,Kunfeng Li,Shuang Zhao,Zhen Zhang,Peng Zhang,Yilong Song,Yuanjia Xia,Zhicong Gan,Zichun Yang
标识
DOI:10.1016/j.matlet.2024.136418
摘要
Aerogel fibers inherit the merits of aerogel and fibrous materials, such as ultralow density, large specific surface area and high flexibility, demonstrating great potential as the next generation functional fibers. Herein, an ice-template freeze-casting strategy is developed to prepare polysilsesquioxane aerogel long fibers (PALFs) similar to natural fibers in structure. During the freeze-casting, the strong mutual interaction between solid and liquid phases in the hydrogel induces uniform nucleation and continuous growth of ice crystals in confined spaces. The three-dimensional monolithic hydrogel is gradually deconstructed into one-dimensional fibrous geometries by the growing columnar ice crystals. The obtained PALFs exhibit the polygonal cross-section with a uniform mesoporous structure. After simple physical assembly, the monolithic PALFs exhibit good thermal insulation performance (as low as 25.0 mW/(m·K) at 25 °C) and high-efficiency absorption of broadband sound waves (with a noise reduction coefficient up to 0.58).
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