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使用窄带阻带纳米多层滤波器的最小效率损失的 RGB 彩色 Cu(In,Ga)(S,Se) 薄膜太阳能电池。

RGB-Colored Cu(In,Ga)(S,Se) Thin-Film Solar Cells with Minimal Efficiency Loss Using Narrow-Bandwidth Stopband Nano-Multilayered Filters.

机构信息

Department of Chemistry , Kookmin University , Jeongneung-dong, Seongbuk-gu, Seoul 02707 , Republic of Korea.

Clean Energy Research Center , Korea Institute of Science and Technology , Hawolgok-dong, Seongbuk-gu, Seoul 02792 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2019 Mar 13;11(10):9994-10003. doi: 10.1021/acsami.8b21853. Epub 2019 Feb 27.

Abstract

Colorful Cu(In,Ga)(S,Se) (CIGSSe) thin-film solar cells were achieved by integrating a narrow-bandwidth stopband filter (NBSF) on a CIGSSe cell. The full range of visible color of NBSF could be realized by depositing one-dimensional nano-multilayers of alternating high-index (AlO) and low-index (SiO) films while controlling the thickness of each layer and the number of stacked layers. Particularly, high-purity red, green, and blue (RGB) colors were generated on black CIGSSe cells with minimal harvest efficiency drop, showing power conversion efficiency (PCE) losses for the red and green CIGSSe cells of 4.2 and 1.2%, respectively, with no reduction in the PCE of the blue CIGSSe cell. The minimal drop in the harvest efficiency was attributed to the antireflection effect of the NBSF and the low overlap between the reflectance spectrum of NBSFs with a narrow stopband and the absorption spectrum of CIGSSe. The esthetic value could be further enhanced through the color variation of the RGB NBSF with viewing angle, so-called pearl-like colors. The synergetic effect of minimal efficiency loss, full color realization, and the pearl-like color change of the newly developed NBSFs can make CIGSSe cells applicable to building-integrated photovoltaics.

摘要

通过在 CIGSSe 电池上集成一个窄带阻滤波器(NBSF),实现了彩色的 Cu(In,Ga)(S,Se)(CIGSSe)薄膜太阳能电池。通过沉积交替的高折射率(AlO)和低折射率(SiO)纳米多层膜,同时控制每层的厚度和堆叠层数,可以实现 NBSF 的全可见色彩范围。特别地,在黑色 CIGSSe 电池上可以生成高纯度的红、绿、蓝(RGB)颜色,而不会降低采集效率,红色和绿色 CIGSSe 电池的功率转换效率(PCE)分别损失 4.2%和 1.2%,而蓝色 CIGSSe 电池的 PCE 没有降低。采集效率的最小下降归因于 NBSF 的抗反射效果以及具有窄阻带的 NBSF 的反射光谱与 CIGSSe 的吸收光谱之间的低重叠。通过 NBSF 的 RGB 颜色随视角的变化,即所谓的珍珠色,可以进一步提高美观价值。新开发的 NBSF 的最小效率损失、全彩色实现和珍珠色变化的协同效应可以使 CIGSSe 电池适用于建筑集成光伏。

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