纤维素
结构材料
辐射冷却
复合材料
材料科学
纤维
结构强度的尺寸效应
纤维素纤维
阻燃剂
化学工程
物理
热力学
工程类
作者
Yipeng Chen,Baokang Dang,Jinzhou Fu,Chao Wang,Caicai Li,Qingfeng Sun,Huiqiao Li
出处
期刊:Nano Letters
[American Chemical Society]
日期:2020-12-10
卷期号:21 (1): 397-404
被引量:185
标识
DOI:10.1021/acs.nanolett.0c03738
摘要
Structural materials with excellent mechanical properties are vitally important for architectural application. However, the traditional structural materials with complex manufacturing processes cannot effectively regulate heat flow, causing a large impact on global energy consumption. Here, we processed a high-performance and inexpensive cooling structural material by bottom-up assembling delignified biomass cellulose fiber and inorganic microspheres into a 3D network bulk followed by a hot-pressing process; we constructed a cooling lignocellulosic bulk that exhibits strong mechanical strength more than eight times that of the pure wood fiber bulk and greater specific strength than the majority of structural materials. The cellulose acts as a photonic solar reflector and thermal emitter, enabling a material that can accomplish 24-h continuous cooling with an average dT of 6 and 8 °C during day and night, respectively. Combined with excellent fire-retardant and outdoor antibacterial performance, it will pave the way for the design of high-performance cooling structural materials.
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