论文标题

BASO4纳米颗粒膜中的显着白天亚镜子辐射冷却

Remarkable Daytime Sub-ambient Radiative Cooling in BaSO4 Nanoparticle Films and Paints

论文作者

Li, Xiangyu, Peoples, Joseph, Yao, Peiyan, Ruan, Xiulin

论文摘要

辐射冷却是一种被动冷却技术,可提供巨大的承诺,可降低空间冷却成本,对抗城市岛屿效应并减轻全球变暖。为了获得被动的白天辐射冷却,当前的最新解决方案通常使用复杂的多层结构或反射金属层,从而限制了它们在许多领域的应用。已经尝试使用单层油漆实现被动的白天辐射冷却,但通常需要厚厚的涂层或显示部分白天冷却。在这项工作中,我们通过Baso4纳米颗粒膜和BASO4纳米复合材料均具有实验性地展示了出色的全白天次级辅助冷却性能。 BASO4具有高太阳能吸收率的高电子带隙,并在9 UM处具有高空窗口发射率。 Baso4纳米颗粒具有适当的粒径和宽阔的粒径分布,可达到97.6%的超高太阳反射率,高空窗户发射率为0.96。在现场测试中,BASO4膜保持在环境温度低的4.5C以上或达到117 W/m2的平均冷却能力。开发了Baso4-丙烯酸涂料,其体积浓度为60%,可提高室外应用的可靠性,达到98.1%的太阳反射率,而天空窗的发射率为0.95。现场测试表明与BASO4膜相似的冷却性能。总体而言,我们的BASO4-丙烯酸涂料显示出标准的功绩为0.77,这是辐射冷却解决方案中最高的,同时提供了极大的可靠性,方便的涂料形式,易用性以及与商用油漆制造工艺的兼容性。

Radiative cooling is a passive cooling technology that offers great promises to reduce space cooling cost, combat the urban island effect and alleviate the global warming. To achieve passive daytime radiative cooling, current state-of-the-art solutions often utilize complicated multilayer structures or a reflective metal layer, limiting their applications in many fields. Attempts have been made to achieve passive daytime radiative cooling with single-layer paints, but they often require a thick coating or show partial daytime cooling. In this work, we experimentally demonstrate remarkable full daytime sub-ambient cooling performance with both BaSO4 nanoparticle films and BaSO4 nanocomposite paints. BaSO4 has a high electron bandgap for low solar absorptance and phonon resonance at 9 um for high sky window emissivity. With an appropriate particle size and a broad particle size distribution, BaSO4 nanoparticle film reaches an ultra-high solar reflectance of 97.6% and high sky window emissivity of 0.96. During field tests, BaSO4 film stays more than 4.5C below ambient temperature or achieves average cooling power of 117 W/m2. BaSO4-acrylic paint is developed with 60% volume concentration to enhance the reliability in outdoor applications, achieving solar reflectance of 98.1% and sky window emissivity of 0.95. Field tests indicate similar cooling performance to the BaSO4 films. Overall, our BaSO4-acrylic paint shows standard figure of merit of 0.77 which is among the highest of radiative cooling solutions, while providing great reliability, the convenient paint form, ease of use and the compatibility with commercial paint fabrication process.

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