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用于建筑节能的耐用自清洁辐射冷却涂层。

Durable Self-Cleaning Radiative Cooling Coatings for Building Energy Efficiency.

作者信息

Ju Huiquan, Long Haibin, Yang Shasha, Wang Fajun, Fang Xinzuo, Fan Wangxi, Li Changquan, Ou Junfei, Li Wen

机构信息

School of Materials Engineering, Jiangsu University of Technology, Changzhou 213001, P. R. China.

School of Chemistry and Chemical Engineering, Jiangsu University of Technology, Changzhou 213001, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Jun 26;16(25):32679-32692. doi: 10.1021/acsami.4c04644. Epub 2024 Jun 13.

Abstract

Passive daytime radiative cooling (PDRC) is an energy-saving technology without an additional energy supply or environmental pollution. At present, most PDRC coatings for buildings are only aiming at high solar reflectivity () and high mid-infrared emissivity () while ignoring practicalities such as adhesion strength, scalability, and durability. In this work, modified calcined kaolin/(ethylene trifluorochloroethylene copolymer-polydimethylsiloxane) (MK/(FEVE-PDMS)) coating with super practicability is prepared by using MK as a filler, FEVE as an adhesive, and PDMS as a hydrophobic modifier. The and of the coating are 92.5 and 94.6%, respectively. The MK/(FEVE-PDMS) coating exhibits superhydrophobicity, with an advancing contact angle (ACA) of 160.2° and a hysteresis contact angle of 7.3°. At an average solar irradiance of 742.78 W m, the coating achieved a temperature drop of 13.12 °C (shielded with PE film) and 3.09 °C (without shielding), respectively, relative to the environment. The coating adheres firmly to the substrate with an adhesion strength of class 2. The superhydrophobicity of the coating provides excellent durability and ease of repair, which can resist UV aging and mechanical damage. The durable superhydrophobicity gives the coating long-term stability in PDRC performance. Additionally, the cheap raw materials and the preparation process, consistent with the production of existing paints, show excellent scalability. Moreover, the energy consumption simulation results show that the energy saving ratio of the coating is more than 10% in the densely populated Yangtze River Delta and Pearl River Delta. The durable self-cleaning radiative coating developed in this work has potential application prospects in areas where the demand for cooling in summer is large and the demand for heating in winter is small.

摘要

被动式日间辐射冷却(PDRC)是一种无需额外能源供应且无污染的节能技术。目前,大多数建筑用PDRC涂料仅着眼于高太阳反射率()和高中红外发射率(),而忽略了诸如附着力、可扩展性和耐久性等实际问题。在本工作中,以改性煅烧高岭土/(乙烯三氟氯乙烯共聚物-聚二甲基硅氧烷)(MK/(FEVE-PDMS))为填料、FEVE为粘合剂、PDMS为疏水改性剂制备了具有超强实用性的涂层。该涂层的和分别为92.5%和94.6%。MK/(FEVE-PDMS)涂层表现出超疏水性,前进接触角(ACA)为160.2°,滞后接触角为7.3°。在平均太阳辐照度为742.78 W m时,该涂层相对于环境分别实现了13.12℃(用PE膜屏蔽)和3.09℃(无屏蔽)的温度下降。该涂层与基材牢固粘结,附着力等级为2级。涂层的超疏水性具有出色的耐久性和易修复性,能够抵抗紫外线老化和机械损伤。持久的超疏水性使涂层在PDRC性能方面具有长期稳定性。此外,廉价的原材料和与现有涂料生产一致的制备工艺显示出优异的可扩展性。而且,能耗模拟结果表明,在人口密集的长江三角洲和珠江三角洲地区,该涂层的节能率超过10%。本工作开发的持久自清洁辐射涂层在夏季制冷需求大、冬季供暖需求小的地区具有潜在的应用前景。

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