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彩色辐射冷却与基于聚氨酯的阻燃涂料:太阳波段中的选择性吸收/反射

Colored Radiative Cooling and Flame-Retardant Polyurethane-Based Coatings: Selective Absorption/Reflection in Solar Waveband.

作者信息

Cai Wei, Wang Junling, Wang Wei, Li Sicheng, Rahman Mohammad Ziaur, Tawiah Benjamin, Ming Yang, Zhou Xia, Xing Weiyi, Hu Yuan, Zhu Jixin, Fei Bin

机构信息

School of Fashion and Textiles, The Hong Kong Polytechnic University, Kowloon, Hong Kong SAR, 999077, P. R. China.

State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, 230026, P. R. China.

出版信息

Small. 2024 Nov;20(46):e2402349. doi: 10.1002/smll.202402349. Epub 2024 Aug 8.

Abstract

The aesthetic demand has become an imperative challenge to advance the practical and commercial application of daytime radiative cooling technology toward mitigating climate change. Meanwhile, the application of radiative cooling materials usually focuses on the building surface, related tightly to fire safety. Herein, the absorption and reflection spectra of organic and inorganic colorants are first compared in solar waveband, finding that iron oxides have higher reflectivity in NIR region. Second, three kinds of iron oxides-based colorants are selected to combine porous structure and silicon-modified ammonium polyphosphate (Si-APP) to engineer colored polyurethane-based (PU) coating, thus enhancing the reflectivity and flame retardancy. Together with reflectivity of more than 90% in near-infrared waveband and infrared emissivity of ≈91%, average temperature drops of ≈5.7, ≈7.9, and ≈3.8 °C are achieved in porous PU/FeO/Si-APP, porous PU/FeO·HO/Si-APP, and porous PU/FeO·HO/Si-APP, compared with dense control samples. The catalysis effect of iron oxides in the cross-linking reaction of pyrolysis products and dehydration mechanism of Si-APP enable PU coating to produce an intumescent and protective char residue. Consequently, PU composite coatings demonstrate desirable fire safety. The ingenious choice of colorants effectively minimizes the solar heating effect and trades off the daytime radiative cooling and aesthetic appearance requirement.

摘要

美学需求已成为推动日间辐射冷却技术在缓解气候变化方面的实际和商业应用的一项紧迫挑战。与此同时,辐射冷却材料的应用通常集中在建筑表面,这与消防安全密切相关。在此,首先比较了有机和无机着色剂在太阳波段的吸收和反射光谱,发现氧化铁在近红外区域具有较高的反射率。其次,选择三种基于氧化铁的着色剂与多孔结构和硅改性聚磷酸铵(Si-APP)相结合,设计出彩色聚氨酯基(PU)涂层,从而提高反射率和阻燃性。与致密对照样品相比,多孔PU/FeO/Si-APP、多孔PU/FeO·H₂O/Si-APP和多孔PU/Fe₂O₃/Si-APP在近红外波段的反射率超过90%,红外发射率约为91%,平均温度下降约5.7、约7.9和约3.8℃。氧化铁在热解产物交联反应中的催化作用以及Si-APP的脱水机理使PU涂层产生膨胀性和保护性的炭质残渣。因此,PU复合涂层表现出理想的消防安全性能。着色剂的巧妙选择有效地降低了太阳加热效应,并兼顾了日间辐射冷却和美观要求。

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