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Using Spin-Coated Silver Nanoparticles/Zinc Oxide Thin Films to Improve the Efficiency of GaInP/(In)GaAs/Ge Solar Cells

机译:使用旋涂的银纳米颗粒/氧化锌薄膜以提高GaInP /(In)GaAs / GE太阳能电池的效率

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摘要

We synthesized a silver nanoparticle/zinc oxide (Ag NP/ZnO) thin film by using spin-coating technology. The treatment solution for Ag NP/ZnO thin film deposition contained zinc acetate (Zn(CH3COO)2), sodium hydroxide (NaOH), and silver nitrate (AgNO3) aqueous solutions. The crystalline characteristics, surface morphology, content of elements, and reflectivity of the Ag NPs/ZnO thin film at various concentrations of the AgNO3 aqueous solution were investigated using X-ray diffraction, scanning electron microscopy, energy-dispersive X-ray spectroscopy, atomic force microscopy, and ultraviolet–visible–near infrared spectrophotometry. The results indicated that the crystalline structure, Ag content, and reflectance of Ag NP/ZnO thin films depended on the AgNO3 concentration. Hybrid antireflection coatings (ARCs) composed of SiNx and Ag NPs/ZnO thin films with various AgNO3 concentrations were deposited on GaInP/(In)GaAs/Ge solar cells. We propose that the optimal ARC consists of SiNx and Ag NP/ZnO thin films prepared using a treatment solution of 0.0008 M AgNO3, 0.007 M Zn(CH3COO)2, and 1 M NaOH, followed by post-annealing at 200 °C. GaInP/(Al)GaAs/Ge solar cells with the optimal hybrid ARC and SiNx ARC exhibit a conversion efficiency of 34.1% and 30.2% with Voc = 2.39 and 2.4 V, Jsc = 16.63 and 15.37 mA/cm2, and fill factor = 86.1% and 78.8%.
机译:通过使用旋涂技术,通过使用旋涂技术合成银纳米粒子/氧化锌(Ag NP / ZnO)薄膜。 Ag NP / ZnO薄膜沉积的处理溶液含有乙酸锌(Zn(CH3COO)2),氢氧化钠(NaOH)和硝酸银(AgNO3)水溶液。使用X射线衍射研究了各种浓度的AgNO3水溶液的Ag NPS / ZnO薄膜的结晶特性,元素形态,元件含量和反射率,扫描电子显微镜,能量分散X射线光谱,原子力显微镜,和紫外 - 可见近红外分光光度法。结果表明,Ag NP / ZnO薄膜的结晶结构,Ag含量和反射率依赖于AgNO3浓度。在GaInP /(IN)GaAs / GE太阳能电池上沉积了由Sinx和Ag NPS / ZnO薄膜组成的混合抗反射涂层(弧)。我们提出最佳ARC由使用0.0008M AgNO3,0.007M Zn(CH 3 COO)2和1M NaOH的处理溶液制备的Sinx和Ag NP / ZnO薄膜组成,然后在200℃下进行退火。 GaInP /(AL)GaAs / Ge太阳能电池具有最佳的杂交弧和SINX弧,COV = 2.39和2.4V,JSC = 16.63和15.37mA / cm2的转化效率为34.1%和30.2%,填充因子= 86.1 %和78.8%。

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