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The tuning of broad-band absorption in the visible range from plasmonic CZTS-Ag multilayer thin film for solar cell application

机译:从Plasmonic CZTS-AG多层薄膜用于太阳能电池应用的可见范围中的宽带吸收的调整

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The absorption co-efficient of CZTS in the entire visible range can be enhanced by inducing the localized surface plasmon resonance by means of introducing Ag nanoparticles. CZTS-Ag multilayer thin films were fabricated by successive sputtering of CZTS and Ag. The concentration of Ag nanoparticles embedded in CZTS matrix was varied by increasing the number of Ag layer. The crystal structure and surface properties of the as-prepared multilayers were modified by annealing at 500°C under vacuum condition. The formation of single phase kesterite structure of CZTS has been studied by XRD and micro Raman spectroscopy. A broad band absorption is followed by band edge absorption is achieved with 3 layers of Ag sandwiched between 4 layers of CZTS films. The direct band gap for CZTS film is calculated to be 1.45 eV whereas it is blue shifted on multilayers due to the combined effect of surface plasmon resonance and excitonic transition attributed to hybrid nature of Ag and CZTS phases respectively. The observed increase in absorption in the entire visible region could probably be helpful for increasing the trapping of incident photons in CZTS based thin film solar cells.
机译:通过引入Ag纳米颗粒诱导局部表面等离子体共振可以提高整个可见范围中的CZT的吸收共同效率。 CZTS-AG多层薄膜通过CZTS和Ag的连续溅射制造。通过增加Ag层的数量来改变嵌入CZTS基质中的Ag纳米颗粒的浓度。通过在真空条件下在500℃下退火来改变制备的多层的晶体结构和表面性质。通过XRD和微拉曼光谱研究了CZTS单相keterite结构的形成。宽带吸收随后是带边缘吸收,通过3层Ag夹在4层CZT膜之间。 CZTS膜的直接带隙计算为1.45eV,而它由于表面等离子体共振和激发转换分别归因于AG和CZTS相的杂交性质的杂交性质的综合效应而在多层上移动。观察到的整个可见区域中的吸收的增加可能有助于增加基于CZTS的薄膜太阳能电池中的入射光子的捕集。

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