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用于被动日间辐射冷却的耐湿多孔聚合物涂层

Humidity-tolerant porous polymer coating for passive daytime radiative cooling.

作者信息

Hong Dongpyo, Lee Yong Joon, Jeon Ok Sung, Lee In-Sung, Lee Se Hun, Won Jae Yeon, Jeon Young Pyo, La Yunju, Kim Seonmyeong, Park Gun-Sik, Yoo Young Joon, Park Sang Yoon

机构信息

Advanced Institute of Convergence Technology, Seoul National University, Suwon-si, Gyeonggi-do, 16229, Republic of Korea.

PURITECH co., Ltd., Pyeongtaek-si, Gyeonggi-do, 17745, Republic of Korea.

出版信息

Nat Commun. 2024 May 25;15(1):4457. doi: 10.1038/s41467-024-48621-6.

Abstract

Coating building envelopes with a passive daytime radiative cooling (PDRC) material has attracted enormous attention as an alternative cooling technique with minimal energy consumption and carbon footprint. Despite the exceptional performance and scalability of porous polymer coating (PPC), achieving consistent performance over a wide range of drying environments remains a major challenge for its commercialization as a radiative cooling paint. Herein, we demonstrate the humidity vulnerability of PPC during the drying process and propose a simple strategy to greatly mitigate the issue. Specifically, we find that the solar reflectance of the PPC rapidly decreases with increasing humidity from 30% RH, and the PPC completely losses its PDRC ability at 45% RH and even become a solar-heating material at higher humidity. However, by adding a small amount of polymer reinforcement to the PPC, it maintains its PDRC performance up to 60% RH, resulting in a 950% increase in estimated areal coverage compared to PPC in the United States. This study sheds light on a crucial consistency issue that has thus far been rarely addressed, and offers engineering guidance to handle this fundamental threat to the development of dependable PDRC paint for industrial applications.

摘要

用被动式日间辐射冷却(PDRC)材料涂覆建筑围护结构,作为一种能耗和碳足迹最小的替代冷却技术,已引起了广泛关注。尽管多孔聚合物涂层(PPC)具有卓越的性能和可扩展性,但在广泛的干燥环境中实现一致的性能,仍然是其作为辐射冷却涂料商业化的一个重大挑战。在此,我们展示了PPC在干燥过程中的湿度敏感性,并提出了一种简单的策略来大大缓解这一问题。具体而言,我们发现PPC的太阳能反射率随着湿度从30%相对湿度增加而迅速下降,并且PPC在45%相对湿度时完全失去其PDRC能力,甚至在更高湿度下成为一种太阳能加热材料。然而,通过向PPC中添加少量聚合物增强剂,它在高达60%相对湿度下仍能保持其PDRC性能,与美国的PPC相比,估计面积覆盖率提高了950%。这项研究揭示了一个迄今为止很少被解决的关键一致性问题,并为应对这一对工业应用中可靠的PDRC涂料发展的根本威胁提供了工程指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab8e/11127965/81c384dcad4a/41467_2024_48621_Fig1_HTML.jpg

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