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用于引导太阳光子的光谱工程涂层

Spectrally Engineered Coatings for Steering the Solar Photons.

作者信息

Gong Quan, Chen Jianheng, Zhang Yijie, Lu Lin

机构信息

Department of Building Environment and Energy Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.

出版信息

Adv Mater. 2025 Jul;37(27):e2502542. doi: 10.1002/adma.202502542. Epub 2025 Apr 26.

Abstract

The spectral properties of radiative cooling (RC) and photovoltaic (PV) govern their capacity to utilize solar photons at distinct energy levels. However, spectral mismatches with the solar spectrum result in significant inefficiencies: non-photovoltaic heat losses in PV panels and wasted energy from reflected solar radiation in RC systems. To address this, a photoluminescent RC coating with spectrally selective reflectivity is developed to be integrated it with bifacial photovoltaic (biPV) panels. The high reflectivity of the RC coating directs photons to the rear side of the PV panels, while its spectral selectivity optimizes the energy distribution of photons reaching the rear side, resulting in a 32% increase in the overall power output of the bifacial PV system. Additionally, the incorporation of photoluminescent materials enables the conversion of absorbed photons into luminescence rather than heat by suppressing non-radiative transitions. This reduces effective solar absorption by 14% and enhances radiative cooling performance. Simulated urban rooftop deployment demonstrates that this dual-harvesting system meet ≈18.1% of Hong Kong's annual electricity demand, offering a scalable pathway toward carbon-neutral cities.

摘要

辐射冷却(RC)和光伏发电(PV)的光谱特性决定了它们在不同能级利用太阳光子的能力。然而,与太阳光谱的光谱不匹配会导致显著的低效率:光伏板中的非光伏热损失以及RC系统中反射太阳辐射造成的能量浪费。为了解决这个问题,开发了一种具有光谱选择性反射率的光致发光RC涂层,并将其与双面光伏(biPV)板集成。RC涂层的高反射率将光子引导至光伏板的背面,而其光谱选择性优化了到达背面的光子的能量分布,使双面光伏系统的总功率输出提高了32%。此外,光致发光材料的加入通过抑制非辐射跃迁,使吸收的光子转化为发光而不是热量。这将有效太阳吸收率降低了14%,并提高了辐射冷却性能。模拟的城市屋顶部署表明,这种双收获系统满足了香港约18.1%的年度电力需求,为实现碳中和城市提供了一条可扩展的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e574/12243724/8cd72df817e5/ADMA-37-2502542-g005.jpg

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