论文标题

抑制散落的窗户用于辐射冷却应用

Suppressed-scattering windows for radiative cooling applications

论文作者

Pérez-Escudero, José M., Torres-García, Alicia E., Leazun, Carloz, Caggiano, Antonio, Peralta, Ignacio, Dolado, Jorge S., Beruete, Miguel, Liberal, Iñigo

论文摘要

共振纳米颗粒对光的散射是增强日光辐射冷却中太阳反射率的关键过程。在这里,我们研究了材料分散对流行纳米颗粒散射性能的影响,对辐射冷却应用。我们表明,由于材料分散,在可见频率下具有质量相似的响应的纳米颗粒在红外频率下具有根本不同的散射特性。发现分散纳米颗粒显示出抑制散落的窗户,从而可以在高度反射的样品中选择性热发射。被抑制的窗户的存在仅取决于材料分散,即使在随机的复合材料和周期性的跨面中,它们也将其固定在相同的波长上。最后,我们研究了混凝土的主要阶段钙 - 硅酸盐水合物(CSH),作为分散宿主的一个例子,说明了纳米颗粒的共同设计和主机允许调整被抑制散发的窗口。我们的结果表明,受控的纳米磨蚀剂将具有昼夜被动辐射冷却能力的混凝土。

The scattering of light by resonant nanoparticles is a key process for enhancing the solar reflectance in daylight radiative cooling. Here, we investigate the impact of material dispersion on the scattering performance of popular nanoparticles for radiative cooling applications. We show that, due to material dispersion, nanoparticles with a qualitatively similar response at visible frequencies exhibit fundamentally different scattering properties at infrared frequencies. It is found that dispersive nanoparticles exhibit suppressed-scattering windows, allowing for selective thermal emission within an highly reflective sample. The existence of suppressed-scattering windows solely depends on material dispersion, and they appear pinned to the same wavelength even in random composite materials and periodic metasurfaces. Finally, we investigate calcium-silicate-hydrate (CSH), the main phase of concrete, as an example of a dispersive host, illustrating that the co-design of nanoparticles and host allows for tuning of the suppressed-scattering windows. Our results indicate that controlled nanoporosities would enable concrete with daylight passive radiative cooling capabilities.

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