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Wavelength conversion film with glass coated Eu chelate for enhanced silicon-photovoltaic cell performance

机译:带有玻璃涂层的Eu螯合物的波长转换膜可增强硅光伏电池的性能

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摘要

In order to improve the conversion efficiency of a silicon-photovoltaic (PV) module, we investigated the combination with a wavelength conversion film (WCF), which consists of Eu chelate particles encapsulated by the sol-gel derived silica glass. The photoluminescence (PL) excitation spectrum of Eu chelate shows that the violet light below 400 nm is effectively converted to the red emission at 613 nm. Since the PV cell has higher sensitivity at the red wavelength region compared to the violet region, Eu chelate is one of the suitable material for a WCF. The diameter of fabricated sol-gel encapsulated Eu chelate was larger than the wavelength of irradiated sunlight, therefore, the transmittance of a WCF decreased with increasing the concentration of Eu chelate. The short circuit current (J_(SC)) was increased by inserting the the WCF on the front side of Si-PV cell compared to the reference module (giass/ethylene vinyl acetate/ WCF without Eu chelate/Si-PV cell/EVA/back-film), and the maximum increase of ΔJ_(sc) was 1.03 mA/cm~2 compared to the reference module. However, the maximum ΔJ_(sc) of fabricated module was almost same as the conventional Si-PV cell due to the refractive index mismatch of each layers.
机译:为了提高硅光伏(PV)模块的转换效率,我们研究了与波长转换膜(WCF)的组合,该波长转换膜由被溶胶-凝胶衍生的二氧化硅玻璃封装的Eu螯合物颗粒组成。 Eu螯合物的光致发光(PL)激发光谱表明,低于400 nm的紫光被有效转换为613 nm的红光。由于与紫色区域相比,PV电池在红色波长区域具有更高的灵敏度,因此Eu螯合物是WCF的合适材料之一。制备的溶胶-凝胶包裹的Eu螯合物的直径大于照射的太阳光的波长,因此,随着CF螯合物浓度的增加,WCF的透射率降低。与参考模块相比,通过将WCF插入Si-PV电池的前侧来增加短路电流(J_(SC))(无铅螯合剂的giass /乙烯乙酸乙烯酯/ WCF / Si-PV电池/ EVA /背膜),与参考模块相比,ΔJ_(sc)的最大增加为1.03 mA / cm〜2。但是,由于各层的折射率不匹配,所以所制造的模块的最大ΔJ_(sc)与传统的Si-PV电池几乎相同。

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