Lei Leqi, Wu Ting, Shi Shuo, Si Yifan, Zhi Chuanwei, Huang Kaisong, Yang Jieqiong, Liang Xinshuo, Zhu Shanshan, Qu Jinping, Hu Jinlian
Department of Biomedical Engineering, City University of Hong Kong, Hong Kong, 999077, Hong Kong SAR, People's Republic of China.
School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology Wuhan, Hubei, 430074, People's Republic of China.
Nanomicro Lett. 2025 Aug 5;18(1):21. doi: 10.1007/s40820-025-01859-1.
This review thoroughly encapsulates the contemporary advancements in radiative cooling systems, from materials to applications. Comprehensive discussion of the fundamental concepts of radiative cooling systems, engineered materials, thermal-regulating textiles and energy-saving devices. The review critically evaluates the obstacles confronting radiative cooling systems, offering insightful and forward-looking solutions to shape the future trajectory of the discipline.
Radiative cooling systems (RCSs) possess the distinctive capability to dissipate heat energy via solar and thermal radiation, making them suitable for thermal regulation and energy conservation applications, essential for mitigating the energy crisis. A comprehensive review connecting the advancements in engineered radiative cooling systems (ERCSs), encompassing material and structural design as well as thermal and energy-related applications, is currently absent. Herein, this review begins with a concise summary of the essential concepts of ERCSs, followed by an introduction to engineered materials and structures, containing nature-inspired designs, chromatic materials, meta-structural configurations, and multilayered constructions. It subsequently encapsulates the primary applications, including thermal-regulating textiles and energy-saving devices. Next, it highlights the challenges of ERCSs, including maximized thermoregulatory effects, environmental adaptability, scalability and sustainability, and interdisciplinary integration. It seeks to offer direction for forthcoming fundamental research and industrial advancement of radiative cooling systems in real-world applications. [Image: see text]
本综述全面总结了辐射冷却系统从材料到应用的当代进展。对辐射冷却系统、工程材料、热调节纺织品和节能装置的基本概念进行了全面讨论。该综述批判性地评估了辐射冷却系统面临的障碍,为塑造该学科的未来发展轨迹提供了有见地和前瞻性的解决方案。
辐射冷却系统(RCSs)具有通过太阳辐射和热辐射耗散热能的独特能力,使其适用于热调节和节能应用,这对于缓解能源危机至关重要。目前缺乏一篇全面综述,将工程辐射冷却系统(ERCSs)的进展联系起来,涵盖材料和结构设计以及与热和能源相关的应用。在此,本综述首先简要总结了ERCSs的基本概念,然后介绍了工程材料和结构,包括仿生设计、有色材料、超结构配置和多层结构。随后,它总结了主要应用,包括热调节纺织品和节能装置。接下来,它强调了ERCSs面临的挑战,包括最大热调节效果、环境适应性、可扩展性和可持续性以及跨学科整合。它旨在为辐射冷却系统在实际应用中的未来基础研究和产业发展提供方向。[图片:见正文]