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首页> 外文期刊>ACS applied materials & interfaces >Angle-Insensitive Transmission and Reflection of Nanopatterned Dielectric Multilayer Films for Colorful Solar Cells
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Angle-Insensitive Transmission and Reflection of Nanopatterned Dielectric Multilayer Films for Colorful Solar Cells

机译:彩色太阳能电池纳米透明介质多层膜的角度不敏感传输和反射

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摘要

Aesthetically appealing photovoltaic (PV) panels with colorful layers are used in numerous applications involving color matching with the surroundings. To develop a colored film for a PV system, appropriate optical properties such as high transparency and low angle sensitivity are necessary because the colored layers can reduce the efficiency of the PV system by causing variations in the transmittance and angle of incidence. Herein, we propose a facile fabrication method for bioinspired three-dimensional (3D) photonic crystal (PC) films that exhibit broad angle-insensitive transmission and reflection, for application in colorful PV. This structure, patterned on a sequentially stacked 11-layer film of SiO2 and TiO2, is fabricated via nanoimprint lithography and a one-step dry-etching process, without using a metal mask. The changes in transmission and reflection are observed via ultraviolet-visible spectroscopy and from the reflected images obtained under various angles. The transmittance dips of the 3D PC film shift by less than 10 nm in wavelength, for angles from 0 to 45 degrees, indicating low angle dependency. In addition, the change in the observed color, with respect to the viewing position, is less in the fabricated film. Once the 3D PC film was added to a commercial PV cell, it exhibited a higher efficiency (approximately 6% upper) when compared to a cell with a one-dimensional PC film, during the duration of the experiment, from 0 to 30 degrees. Thus, the proposed method demonstrates excellent potential for developing structural color films for achieving aesthetically appealing PV cells.
机译:具有彩色层的美学上吸引光伏(PV)面板用于许多应用涉及与周围环境的颜色匹配的应用。为了开发PV系统的彩色膜,需要适当的光学性质,例如高透明度和低角度灵敏度,因为通过导致透射率和入射角的变化可以降低PV系统的效率。在此,我们提出了一种用于生物透明的三维(3D)光子晶体(PC)膜的体形制造方法,其具有广泛的角度不敏感传输和反射,用于彩色PV。在SiO2和TiO 2的序列堆叠的11层膜上图案化的这种结构通过纳米视光光刻和一步干蚀刻工艺制造,而不使用金属掩模。通过紫外线可见光谱观察传输和反射的变化,并从各种角度获得的反射图像观察。 3D PC膜的透射率倾向在波长下移小于10nm,对于从0到45度的角度,表示低角度依赖性。另外,在制造的膜中,观察到的颜色的变化较少。一旦将3D PC膜添加到商业PV电池中,与在实验期间的电池相比,它表现出更高的效率(约6%的上部),在实验期间,从0到30度。因此,所提出的方法表明了用于显影用于实现美学上吸引的PV电池的结构彩膜的优异潜力。

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