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Colored solar cells with spectrally selective photonic crystal reflectors for application in building integrated photovoltaics

机译:具有光谱选择性光子晶体反射器的彩色太阳能电池,用于建设集成的光伏

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In this article, we have reported a nanophotonic coating called Selectively Modulated Aesthetic Reflector Technology (SMART), which can be integrated to any matured solar cell technology to produce colored solar cells or modules. This technology has a potential significance in building integrated photovoltaics to improve aesthetics along with being commercially feasible. As a proof of concept, we have integrated this technology into crystalline silicon solar cells. Here we have used one-dimensional dielectric photonic crystals to selectively reflect the light, to realize multi-color appearances for the solar cells. Silicon Nitride (SiN) and Silicon Oxynitride (SiON) dielectric layers with varying compositions and thickness were used to fabricate these SMART coatings. The optoelectronic effects have been elucidated by spectroscopic, quantum efficiency and I-V measurements. The color perception has been quantitatively investigated using CIE (International Commission on Illumination) 1931 chromaticity diagram. The CIE color co-ordinates for the SMART coatings were (0.39, 0.32), (0.25, 0.38) and (0.20, 0.17) respectively for Red, Green and Blue (RGB) colours and (0.27, 0.29) for white. The cells show an integrated transmittance between 60 and 80% in the absorption regime of the solar cell depending on its color. The efficiency and the performance of different colored solar cells namely RGB and white have been shown on 156 cm(2) cell area. The RGB colors have a relative power conversion efficiency of similar to 70-80% based on different colors whereas white has a relative efficiency of 59% as compared to the standard reference silicon solar cell. This process is industrially feasible and could utilize the vertical area of buildings, which could have a significant application in urban landscaping.
机译:在本文中,我们报道了一种称为选择性调制的美学反射器技术(智能)的纳米光电涂层,其可以集成到任何成熟的太阳能电池技术以产生彩色太阳能电池或模块。该技术在建设集成光伏中具有潜在的意义,以改善美学以及商业可行。作为概念证明,我们已经将该技术集成到晶体硅太阳能电池中。这里我们使用了一维介电光子晶体来选择性地反射光,以实现太阳能电池的多色外观。使用不同组合物和厚度的氮化硅(SiN)和氧氮化硅(SiON)介电层制造这些智能涂层。通过光谱,量子效率和I-V测量阐明了光电效应。使用CIE(国际照明委员会)1931年色度图已经定量调查了颜色感知。用于智能涂层的CIE颜色坐标(0.39,0.32),(0.25,0.38)和(0.20,0.17),用于红色,绿色和蓝色(RGB)颜色和(0.27,0.29),适用于白色。根据其颜色,细胞在太阳能电池的吸收制度中显示了60至80%的集成透射率。不同颜色太阳能电池的效率和性能即RGB和白色已经显示在156cm(2)个细胞面积上。 RGB颜色的相对功率转换效率与基于不同颜色的70-80%,而白色的相对效率为59%,与标准参考硅太阳能电池相比。该过程在工业上是可行的,可以利用建筑物的垂直区域,这可能在城市景观中具有重要应用。

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