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Photoelectrochemical, photophysical and morphological studies of electrostatic layer-by-layer thin films based on poly(p-phenylenevinylene) and single-walled carbon nanotubes

机译:基于聚对苯撑乙烯撑和单壁碳纳米管的静电层薄膜的光电化学,光物理和形态研究

摘要

The preparation of multilayer films based on poly(p-phenylenevinylene) (PPV) and carboxylic-functionalized single-walled carbon nanotubes (SWNT-COOH) by electrostatic interaction using the layer-by-layer (LbL) deposition method is reported herein. The multilayer build-up, monitored by UV-Vis and photoluminescence (PL) spectroscopies, displayed a linear behavior with the number of PPV and SWNT-COOH layers deposited that undergo deviation and spectral changes for thicker films. Film morphology was evaluated by AFM and epifluorescence microscopies showing remarkable changes after incorporation of SWNT-COOH layers. Films without SWNT show roughness and present dispersed grains; films with SWNT-COOH layers are flatter and some carbon nanotube bundles can be visualized. The photoinduced charge transfer from the conducting polymer to SWNT-COOH was analyzed by PL quenching either by the decrease of the emission intensity or by the presence of dark domains in the epifluorescence micrographs. Photoelectrochemical characterization was performed under white light and the films containing SWNT-COOH displayed photocurrent values between 2.0 μA cm-2 and 7.5 μA cm-2, as the amount of these materials increases in the film. No photocurrent was observed for the film without carbon nanotubes. Photocurrent generation was enhanced and became more stable when an intermediate layer of PEDOT:PSS was interposed between the active layer and the ITO electrode, indicating an improvement in hole transfer to the contacts. Our results indicate that these multilayer films are promising candidates as active layers for organic photovoltaic cells.
机译:本文报道了通过使用层-层(LbL)沉积法的静电相互作用制备基于聚对苯撑亚乙烯基(PPV)和羧基官能化的单壁碳纳米管(SWNT-COOH)的多层膜。通过UV-Vis和光致发光(PL)光谱仪监控的多层堆积显示出线性行为,其中沉积的PPV和SWNT-COOH层数经历了较厚膜的偏离和光谱变化。通过AFM评估膜的形态,并且在掺入SWNT-COOH层后,落射荧光显微镜检查显示出显着的变化。没有SWNT的薄膜会显示出粗糙并出现分散的颗粒;具有SWNT-COOH层的薄膜更平坦,并且可以看到一些碳纳米管束。通过PL猝灭,通过降低发射强度或通过落射荧光显微照片中暗区的存在来分析从导电聚合物到SWNT-COOH的光诱导电荷转移。在白光下进行光电化学表征,并且随着膜中这些材料数量的增加,含有SWNT-COOH的薄膜显示的光电流值介于2.0μAcm-2和7.5μAcm-2之间。没有碳纳米管的薄膜没有观察到光电流。当在有源层和ITO电极之间插入PEDOT:PSS的中间层时,光电流的产生得以增强并变得更加稳定,这表明空穴向触点的转移得到了改善。我们的结果表明,这些多层膜有望作为有机光伏电池的活性层。

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