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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Optically rough and physically flat TCO substrate formed by coating ZnO thin film on pyramid-patterned glass substrate
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Optically rough and physically flat TCO substrate formed by coating ZnO thin film on pyramid-patterned glass substrate

机译:通过在金字塔图案化玻璃基板上涂覆ZnO薄膜形成的光学粗糙和物理平坦的TCO基板

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摘要

An optically rough and physically flat (OR-PF) TCO substrate was developed by spin-coating Al-doped ZnO thin film on glass substrate patterned with random pyramidal morphology to enhance the light absorption in superstrate-type thin-film silicon solar cells without deteriorating the growth of photoactive layers. This substrate possesses flat surface with a root mean square roughness of 10.9 nm, high visible light transmittance of over 86%, a sheet resistance of 29.5 Omega/sq, and moderate light-scattering ability. A surface morphology of random pyramidal morphology was formed on the glass substrate by replicating the pyramidal surface texture of a ZnO thin film with the room-temperature nanoimprint technique. Employed as the front electrode of hydrogenated amorphous Si single junction solar cells, this OR-PF substrate enabled a V-oc of 0.91 eV, an FF of 0.71, a J(sc) gain of approximately 8%, and an efficiency gain of approximately 20% with respect to the AZO-coated flat glass substrate. The J(sc) gain is attributed to the enhancement in the light absorption of a-Si:H solar cells triggered by the diffraction behaviour of the interfacial pyramidal morphology, while the achievement of large V-oc and FF is ascribed to the improvement in the growth quality of the photoactive layers. Based on the calculation results of the bidirectional scattering distribution function, this substrate empowers comparable intensity of the diffraction peaks for 600-700 nm wavelength light but scatters less light away from the specular direction with respect to the conventional pyramid-textured ZnO substrate. This OR-PF substrate would enable efficient photon management and the growth of high-quality photoactive materials simultaneously for thin-film silicon solar cells.
机译:通过在随机锥体形态的玻璃基板上旋转涂覆的Al掺杂的ZnO薄膜而开发了光学粗糙和物理平坦(OR-PF)TCO衬底,以增强超级型薄膜硅太阳能电池的光吸收而不会恶化光活性层的生长。该基材具有扁平表面,具有10.9nm,高可见光透射率为86%,薄层电阻为29.5Ω/ sq的扁平表面,具有适中的光散射能力。通过将ZnO薄膜的金字塔表面纹理与室温纳米压印技术复制,在玻璃基板上形成随机金字塔形态的表面形态。用作氢化无定形Si单结太阳能电池的前电极,该或-PF衬底使得V-OC为0.91eV,FF为0.71,j(sc)增益约为8%,效率增益约为相对于偶氮涂覆的扁平玻璃基板20%。 J(SC)增益归因于A-Si:H太阳能电池的光吸收的增强,其由界面金字塔形态的衍射行为引发,而大V-OC和FF的成就归因于改进光活性层的生长质量。基于双向散射分布函数的计算结果,该基板赋予衍射峰的相当强度为600-700nm波长光,但相对于传统的金字塔织地ZnO衬底,散向远离镜面方向的光。该或-PF基板将能够高效的光子管理和高质量的光活性材料同时用于薄膜硅太阳能电池。

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