制作
材料科学
介孔材料
热的
纳米技术
纳米尺度
保温
光学透明度
缩放比例
透明度(行为)
光电子学
超材料
热导率
不透明度
多孔性
薄膜
热能
纳米
复合材料
纳米结构
动能
全息术
多孔介质
电介质
工程物理
胶束
电子设备和系统的热管理
光学
绝缘体(电)
透射率
作者
Amit Bhardwaj,Blaise Fleury,Bohdan Senyuk,Eldho Abraham,Jan Bart ten Hove,Taewoo Lee,Vladyslav Cherpak,Ivan I. Smalyukh
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-12-11
卷期号:390 (6778): 1171-1176
被引量:9
标识
DOI:10.1126/science.adx5568
摘要
Mesoporous materials exhibit highly controlled nanoscale structures, often templated by liquid crystalline assemblies of surfactants, with emergent and often designable physical properties. However, scaling their fabrication to be suitable for uses such as envelopes of buildings is challenging. In this work, we describe fabrication of flexible square-meter-sized films and multicentimeter-thick slabs made of three-dimensional spatial graphs of mesopore tubes that have all structural features under 50 nanometers. A solution-based kinetic fabrication process templates growing networks of cylindrical surfactant micelles with thin tubes of polysiloxane-forming gel networks and, upon replacing surfactants and solvents with air, yields lightweight materials with greater than 99% visible-range optical transparency and approximately 10 milliwatts per kelvin per meter thermal conductivity. Such predesigned metamaterials enable transparent thermal barriers for wall-grade insulated glass units, square-meter window retrofits, and unconcentrated solar thermal energy harnessing.
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