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通过阻抗谱对聚苯胺 - 硫化镉纳米管混合染料敏化太阳能电池的洞察。

An insight into the hybrid dye-sensitized solar cell from polyaniline-CdS nanotubes through impedance spectroscopy.

作者信息

Shit Arnab, Chal Pousali, Nandi Arun K

机构信息

Polymer Science Unit, Indian Association for the Cultivation of Science, Jadavpur, Kolkata-700032, India.

出版信息

Phys Chem Chem Phys. 2016 Nov 23;18(46):31732-31743. doi: 10.1039/c6cp06124a.

Abstract

Composites of polyaniline (PANI) and cadmium sulfide nanoparticles (CdS NPs) are in situ synthesized by polymerizing aniline in acetic acid medium for different concentrations of CdS NPs. The composites, characterized by scanning and transmission electron microscopy, exhibit nanotubular morphology of PANI decorated with nanospheres of CdS NPs at their outer surface. The FTIR and UV-vis spectra indicate strong interaction between PANI and the CdS NPs suggesting a good conjugate for photovoltaic applications. The dc conductivities of the composite increase with an increase of the CdS concentration showing a maximum of 1.17 × 10 S cm for the C200 sample (obtained by polymerizing 182 μL aniline with 200 mg CdS). The current-voltage plots indicate that the photocurrent is higher from the dark current and the separation between the dark current and photocurrent is maximum in C200. The effectiveness of these composites in DSSCs is studied under illumination of 100 mW cm and the C200 device exhibits a maximum open circuit voltage of 0.73 V, a short circuit current of 8.22 mA cm, and a power conversion efficiency of 3.96%. The impedance study of the cells indicates that the lifetime of the photo-injected electrons is highest (1.34 ms) for the C200 sample, explaining the maximum PCE among the composites.

摘要

通过在乙酸介质中针对不同浓度的硫化镉纳米颗粒(CdS NPs)使苯胺聚合,原位合成了聚苯胺(PANI)与硫化镉纳米颗粒的复合材料。通过扫描电子显微镜和透射电子显微镜表征的这些复合材料,呈现出聚苯胺的纳米管状形态,其外表面装饰有硫化镉纳米颗粒的纳米球。傅里叶变换红外光谱(FTIR)和紫外可见光谱表明聚苯胺与硫化镉纳米颗粒之间存在强相互作用,这表明该复合材料是用于光伏应用的良好共轭物。复合材料的直流电导率随着硫化镉浓度的增加而增加,对于C200样品(通过将182 μL苯胺与200 mg硫化镉聚合得到),其最大值为1.17×10 S cm。电流 - 电压曲线表明,光电流高于暗电流,并且暗电流与光电流之间的差值在C200中最大。在100 mW cm的光照下研究了这些复合材料在染料敏化太阳能电池(DSSCs)中的有效性,C200器件表现出最大开路电压为0.73 V,短路电流为8.22 mA cm,功率转换效率为3.96%。电池的阻抗研究表明,C200样品的光注入电子寿命最高(1.34 ms),这解释了该复合材料中最大功率转换效率的原因。

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