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Facile Synthesis of ZrO 2 -SiO 2 Antireflective Films with Good Mechanical Performances for Perovskite Solar Cells.

Qiufen LiuMingfeng ZhangMengfan LuZiao WangGan LuoJianfeng LuDawen ZengXiujian ZhaoShouqin Tian
Published in: Langmuir : the ACS journal of surfaces and colloids (2023)
Antireflective (AR) films are widely applied in solar cells to reduce the reflectivity toward sunlight, thus improving the photoelectric conversion efficiency (PCE) of solar cells. However, AR films are still suffering from poor mechanical properties and low transmittance in photovoltaic applications. Herein, a ZrO 2 -SiO 2 composite film with enhanced mechanical properties was successfully synthesized by a facile sol-gel method, whose pencil hardness increased from less than 6B to B compared with the pure SiO 2 film synthesized with the same alkali-catalyzed method. Moreover, the ZrO 2 -SiO 2 film with a Zr/Si mole ratio ( n Zr/Si ) of 0.06 exhibited a high transmittance gain (ΔT) of 3.0%, and an obvious increase (1.32%) in PCE was observed in a perovskite solar cell compared with the cell covered by a bare glass. Additionally, both the short-circuit current density ( J SC ) and PCE of perovskite solar cells have a non-linear increasing relationship with the average transmittance (T avg ) of the ZrO 2 -SiO 2 composite film. In this sense, this work can provide a facile way to prepare AR films effectively improving performances of solar cells.
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