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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 >Single layer hollow MgF2 nanoparticles as high-performance omnidirectional broadband antireflective coating for solar application
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Single layer hollow MgF2 nanoparticles as high-performance omnidirectional broadband antireflective coating for solar application

机译:单层中空MGF2纳米粒子作为太阳能应用的高性能全向宽带抗反射涂层

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摘要

Reflection is the most disconcerting phenomenon for solar cover glass, and Omnidirectional Broadband Antireflective coating (OBAR) enhances the transmission of the solar cover glass and power conversion efficiency of the photovoltaic cell. In this connection, a facile synthesis route is adapted to develop hollow MgF2 nanoparticles using Magnesium carbonate as a precursor for the first time. Small Angle X-ray scattering (SAXS) quantifies the spatial dimensions of the nanosized substructure, and Transmission Electron Microscope (TEM) utilized to investigate the morphological information of MgF2 hollow nanoparticles. The deposition of MgF2 hollow nanoparticles on the solar cover glass results in OBAR coating and exhibits enhancement of 5.8-31.7% by varying angle of incidence ranging from 10 to 80 degrees in the wavelength range of 400-1100 nm is a breakthrough of its kind. Moreover, the average transmittance results to be 97.88% in spectral range (400-1100 nm) and 99.2% in the visible spectrum at normal incidence. Further, OBAR coated glass encapsulated polycrystalline Si solar cell has shown >10% net increment in the efficiency compared to that of uncoated glass encapsulated device. Also, the developed OBAR coatings exhibited excellent mechanical and weather stability.
机译:反射是太阳能覆盖玻璃最令人讨厌的现象,全向宽带抗反射涂层(OBAR)增强了光伏电池的太阳能覆盖玻璃和功率转换效率的传动。在这方面,容易合成途径适于首次使用碳酸镁作为前体的中空MgF2纳米颗粒。小角度X射线散射(SAX)量化纳米型下结构的空间尺寸,以及用于研究MGF2中空纳米颗粒的形态学信息的透射电子显微镜(TEM)。在太阳能覆盖玻璃上沉积MGF2中空纳米颗粒导致OBAR涂层,并在400-1100nm的波长范围内的10至80度范围内显示出5.8-31.7%的增强。此外,在正常发病率下,平均透射率在光谱范围(400-1100nm)中的97.88%,99.2%。此外,与未涂覆的玻璃包封装置相比,OBAR涂层玻璃包封的多晶Si太阳能电池显示出> 10%净增量。此外,发达的OBAR涂层表现出优异的机械和天气稳定性。

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