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Interface Studies of Small-Molecule Organic Photovoltaics; Surface Modifications, Electron Donor Texturing, and Co-Facial Variations at the Donor/Acceptor Heterojunctions

机译:小分子有机光伏的界面研究;供体/受体异质结处的表面修饰,电子供体纹理化和共面变化

摘要

The role of the oxide/organic and organic/organic interfaces in small-molecule planar-Heterojunction (PHJ) photovoltaics was investigated with three interrelated projects: i) indium-tin oxide (ITO) bottom contact electrodes were modified with gold nanoparticles (Au-NPs) to improve rates of charge-transfer at the donor/oxide interface, ii) donor layers in OPVs were textured to increase charge generation at the organic/organic' interface, and iii) the effect of co-facial overlap on device performance via tuning of the electron acceptor orientation at the organic/organic interface. The modification of ITO with Au-NPs showed increased performance in small-molecule OPVs when compared to non-processed ITO devices due to the interactions between the Au-NPs and the donor material. Textured TiOPc increased overall device performance by a factor of 2X via the increased surface area, near-IR absorption, and increased mobilities. Modified and un-modified PTCDA acceptors showed that co-facial overlap at the organic/organic' interface is a large determinant in device performance, while the performance in small-molecule planar-heterojunction photovoltaics were severely affected by the pre-treatment process, most likely due to the particular interactions between the oxide and the donor material.
机译:通过三个相互关联的项目研究了氧化物/有机和有机/有机界面在小分子平面异质结(PHJ)光伏中的作用:i)用金纳米粒子修饰铟锡氧化物(ITO)底部接触电极(Au- NP),以提高施主/氧化物界面上的电荷转移速率; ii)对OPV中的施主层进行纹理化处理,以增加有机/有机物界面上的电荷生成,并且iii)通过调整有机/有机界面上的电子受体取向。与Au-NPs和供体材料之间的相互作用相比,与未经处理的ITO器件相比,用Au-NPs修饰ITO在小分子OPV中显示出更高的性能。带纹理的TiOPc通过增加的表面积,近红外吸收和增加的迁移率将整体设备性能提高了两倍。改性和未改性的PTCDA受体表明,有机/有机物界面的共面交叠是决定器件性能的重要因素,而小分子平面异质结光伏电池的性能受到预处理过程的严重影响,大多数可能是由于氧化物和施主材料之间的特殊相互作用。

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    Placencia Diogenes;

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  • 年度 2011
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  • 正文语种 en
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