首页> 美国卫生研究院文献>Nanomaterials >Effects of Annealing on Characteristics of Cu2ZnSnSe4/CH3NH3PbI3/ZnS/IZO Nanostructures for Enhanced Photovoltaic Solar Cells
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Effects of Annealing on Characteristics of Cu2ZnSnSe4/CH3NH3PbI3/ZnS/IZO Nanostructures for Enhanced Photovoltaic Solar Cells

机译:退火对增强型太阳能电池Cu2ZnSnSe4 / CH3NH3PbI3 / ZnS / IZO纳米结构特性的影响

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摘要

This paper presents new photovoltaic solar cells with Cu ZnSnSe /CH NH PbI (MAPbI )/ZnS/IZO/Ag nanostructures on bi-layer Mo/FTO (fluorine-doped tin oxide) glasssubstrates. The hole-transporting layer, active absorber layer, electron-transporting layer, transparent-conductive oxide layer, and top electrode-metal contact layer, were made of Cu ZnSnSe , MAPbI perovskite, zincsulfide, indium-doped zinc oxide, and silver, respectively. The active absorber MAPbI perovskite film was deposited on Cu ZnSnSe hole-transporting layer that has been annealed at different temperatures. TheseCu ZnSnSe filmsexhibitedthe morphology with increased crystal grain sizesand reduced pinholes, following the increased annealing temperature. When the perovskitefilm thickness was designed at 700 nm, the Cu ZnSnSe hole-transporting layer was 160 nm, and the IZO (indium-zinc oxide) at 100 nm, and annealed at 650 °C, the experimental results showed significant improvements in the solar cell characteristics. The open-circuit voltage was increased to 1.1 V, the short-circuit current was improved to 20.8 mA/cm , and the device fill factor was elevated to 76.3%. In addition, the device power-conversion efficiency has been improved to 17.4%. The output power was as good as 1.74 mW and the device series-resistance was 17.1 Ω.
机译:本文介绍了在双层Mo / FTO(掺氟氧化锡)玻璃基板上具有Cu ZnSnSe / CH NH PbI(MAPbI)/ ZnS / IZO / Ag纳米结构的新型光伏太阳能电池。空穴传输层,活性吸收层,电子传输层,透明导电氧化物层和顶部电极-金属接触层分别由Cu ZnSnSe,MAPbI钙钛矿,硫化锌,掺杂铟的氧化锌和银制成。 。活性吸收剂MAPbI钙钛矿膜沉积在已在不同温度下退火的Cu ZnSnSe空穴传输层上。随着退火温度的升高,这些Cu ZnSnSe薄膜表现出具有增加的晶粒尺寸和减少的针孔的形态。当钙钛矿膜的厚度设计为700 nm,Cu ZnSnSe空穴传输层为160 nm,IZO(铟锌氧化物)为100 nm并在650°C退火时,实验结果表明太阳能电池的性能得到了显着改善。电池特性。开路电压提高到1.1 V,短路电流提高到20.8 mA / cm,器件填充率提高到76.3%。此外,设备的电源转换效率已提高到17.4%。输出功率高达1.74 mW,器件串联电阻为17.1Ω。

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