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A study of the influence of plasmonic resonance of gold nanoparticle doped PEDOT: PSS on the performance of organic solar cells based on CuPc/C60

机译:掺杂金纳米粒子的PEDOT:PSS的等离子体共振对基于CuPc / C60的有机太阳能电池性能的影响的研究

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摘要

This work studied the role of gold nanoparticles (AuNPs) with different spherical sizes mixed with poly (3, 4-ethylene dioxythiophene): polystyrene sulfonate (PEDOT: PSS) as a hole transfer layer to enhance the efficiency (ITO/PEDOT:PSS (AuNPs)/CuPc/C /Al) organic photovoltaic cell (OPV). AuNPs were synthesized using the thermochemical method and the results of the transmission electron microscope (TEM) images showed that the gold nanoparticles mostly dominated by spherical shapes and sizes were calculated in the range (12–23 nm). Measurements of UV-VIS spectra for AuNPs have shown that the surface plasmon resonance shifted to a higher wavelength with decreasing the particle size. Surface morphology and absorption spectra of OPV cells were studied using atomic force microscope and UV-VIS spectrometer techniques. The efficiency of the OPV cell was calculated without and with AuNPs. Efficiency was increased from 0.78% to 1.02% due to the embedded of AuNPs with (12 nm) in PEDOT/PSS. The increase in the light absorption in CuPc is due to the good transparent conducting of PEDOT:PSS and the increase in the electric field around AuNPs embedded in PEDOT:PSS and inbuilt electric field at the interfacial between CuPc and C is due to the surface plasmon resonance of AuNPs. The increase in these two factors increase the exciton generation in CuPc, dissociation at the interfacial layer, and charge carrier transfer which increases the collection of electrons and holes at cathode and anode.
机译:这项工作研究了具有不同球形尺寸的金纳米颗粒(AuNPs)与聚(3,4-乙烯二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)混合作为空穴传输层以提高效率(ITO / PEDOT:PSS( AuNPs / CuPc / C / Al)有机光伏电池(OPV)。使用热化学方法合成了AuNPs,透射电子显微镜(TEM)图像的结果表明,计算的金纳米颗粒主要由球形和尺寸决定,范围为(12-23 nm)。 AuNPs的UV-VIS光谱测量表明,随着粒子尺寸的减小,表面等离振子共振移至更高的波长。利用原子力显微镜和紫外可见光谱仪技术研究了OPV细胞的表面形态和吸收光谱。在不使用和使用AuNP的情况下计算OPV电池的效率。由于在(PEDOT / PSS)中嵌入了(12 nm)AuNP,效率从0.78%提高到1.02%。 CuPc中光吸收的增加归因于PEDOT:PSS的良好透明导电性,以及嵌入PEDOT:PSS中的AuNPs周围电场的增加以及CuPc和C之间界面处的内置电场归因于表面等离子体激元AuNPs的共振。这两个因素的增加会增加CuPc中激子的产生,界面层的离解以及电荷载流子的转移,从而增加阴极和阳极处电子和空穴的收集。

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