首页> 外文期刊>Bulletin of Materials Science >Copper indium sulphiderzinc sulphide (CIS:ZnS)-alloyed quantum dots as an eco-friendly absorber in solar cells
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Copper indium sulphiderzinc sulphide (CIS:ZnS)-alloyed quantum dots as an eco-friendly absorber in solar cells

机译:铜铟硫化锌硫化锌(CIS:Zns) - 合金化量子点作为太阳能电池的环保吸收器

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摘要

Synthesis and characterization of less toxic copper indium zinc sulphide (CIS:ZnS)-alloyed quantum dots (QDs) were earned out and the ligand exchange process towards the efficiency enhancement in CIS:ZnS QD-sensitized solar cell was demonstrated. The colloidal CIS:ZnS QDs were synthesized by an inexpensive heat up method with oleic acid as the capping ligand. The optical properties were analysed through ultraviolet-visible absorption and photoluminescence emission spectroscopy. The influence of the ligand exchange process on the CIS:ZnS QD-based solar cells was analysed with the fabrication of two batches of solar cells. The ligand exchange process was confirmed from Fourier transform infrared and thermogravimetric analyses. The QD-sensitized solar cells were fabricated using a CIS:ZnS QD-loaded titania photoanode and by employing copper sulphide as the counter electrode. The photovoltaic performance of the fabricated QD solar cells was analysed through photovoltaic characterization methods (current density-voltage characteristics of the devices under the simulated solar light conditions and external quantum efficiency measurements). The ligand-exchanged QD-loaded solar cells show enhanced power conversion efficiency compared to the long chain ligand-capped CIS:ZnS QD-sensitized solar cells.
机译:抑制硫化铟锌铟锌(CIS:ZnS)的合成和表征,并赢得了稳定的量子点(QDS),并朝CIS效率增强的配体交换过程:ZnS QD敏化太阳能电池。胶体顺式:ZnS QDS由廉价的加热方法用油酸作为封端配体合成。通过紫外线可见吸收和光致发光发射光谱分析光学性质。用两批太阳能电池的制备分析了配体交换过程对顺式的影响:ZnS QD基太阳能电池。从傅里叶变换红外和热重分析确认配体交换过程。使用CIS:ZnS QD负载的二氧化钛光电码制造QD敏化太阳能电池,并通过用硫化铜作为对电极。通过光伏表征方法(在模拟的太阳能光线条件和外部量子效率测量下的器件的电流密度 - 电压特性和电流效率测量)分析了制造的QD太阳能电池的光伏性能。与长链配体式CIS:ZnS QD敏化太阳能电池相比,配体交换的QD加载的太阳能电池显示出增强的电力转换效率。

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