材料科学
陶瓷
纳米纤维
气凝胶
气泡
纳米线
复合材料
吸收(声学)
噪音(视频)
纳米技术
光电子学
计算机科学
图像(数学)
人工智能
并行计算
作者
Dingding Zong,Wenya Bai,Meng Geng,Xia Yin,Jianyong Yu,Shichao Zhang,Bin Ding
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-08-11
卷期号:16 (9): 13740-13749
被引量:56
标识
DOI:10.1021/acsnano.2c06011
摘要
Aviation noise pollution has become a significant public health problem, especially with the endless improvement of flight speed and loading capacity. Existing aviation noise absorbers have fatal defects of large weight, weak high-temperature stability, and difficulty to achieve both good low-frequency (<1000 Hz) and high-frequency (up to 6000 Hz) noise absorption simultaneously. Herein, we report a robust strategy to create flexible ceramic nanofiber aerogels with cascaded resonant cavities by the air bubbles-assisted freeze-casting technology. The stable hinged resonance cavity structures coassembled by flexible ceramic nanofibers, soft montmorillonite nanosheets, and silica sol glue endow the aerogels with temperature-invariant compressibility (from -196 to 1100 °C) and bendability. Moreover, the comprehensive advantages of cascaded resonance cavities and interconnected fibrous networks enable flexible ceramic nanofiber aerogels to have temperature-invariant full-frequency noise absorption performance (noise reduction coefficient up to 0.66 in 63-6300 Hz). The synthesis of this flexible ceramic nanofiber aerogel provides a versatile platform for the design of high-efficiency noise-absorbing material for various fields.
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