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基于可见-红外热致变色的仿生零能耗热管理器件用于四季节能。

Bioinspired zero-energy thermal-management device based on visible and infrared thermochromism for all-season energy saving.

机构信息

School of Materials Science and Engineering, National Institute for Advanced Materials, Nankai University, Tianjin, 300350 People's Republic of China.

出版信息

Proc Natl Acad Sci U S A. 2022 Sep 20;119(38):e2207353119. doi: 10.1073/pnas.2207353119. Epub 2022 Sep 12.

Abstract

Radiative thermal management provides a zero-energy strategy to reduce the demands of fossil energy for active thermal management. However, whether solar heating or radiative cooling, one-way temperature control will exacerbate all-season energy consumption during hot summers or cold winters. Inspired by the Himalayan rabbit's hair and 's leaves, we proposed a dual-mode thermal-management device with two differently selective electromagnetic spectrums. The combination of visible and infrared "thermochromism" enables this device to freely switch between solar heating and radiative cooling modes by spontaneously perceiving the temperature without any external energy consumption. Numerical prediction shows that a dual-mode device exhibits an outstanding potential for all-season energy saving in terms of thermal management beyond most static or single-wavelength, range-regulable, temperature-responsive designs. Such a scalable and cost-efficient device represents a more efficient radiative thermal-management strategy toward applying in a practical scenario with dynamic daily and seasonal variations.

摘要

辐射热管理提供了一种零能耗策略,可降低主动热管理对化石能源的需求。然而,无论是太阳能加热还是辐射冷却,单向温度控制都会在炎热的夏季或寒冷的冬季加剧全季节的能源消耗。受喜马拉雅兔毛和'树叶的启发,我们提出了一种具有两个不同选择性电磁光谱的双模式热管理装置。可见光和红外线的“热致变色”的组合使该装置能够通过自发感知温度而无需任何外部能量消耗,在太阳能加热和辐射冷却模式之间自由切换。数值预测表明,与大多数静态或单波长、范围可调、温度响应的设计相比,双模式装置在热管理方面具有出色的全季节节能潜力。这种可扩展且具有成本效益的装置代表了一种更有效的辐射热管理策略,可应用于具有动态日变化和季节变化的实际场景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bff0/9499507/25c26a00e00f/pnas.2207353119fig01.jpg

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