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Controlled nanostructuring of CuPc thin films via glancing angle deposition for idealized organic photovoltaic architectures

机译:通过掠射角沉积控制CuPc薄膜的纳米结构,以实现理想的有机光伏架构

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摘要

We report on the optimization of nanostructured copper phthalocyanine (CuPc) thin films for idealized organic photovoltaic (OPV) architectures using advanced substrate motion and periodic seeding. Oblique angle deposition (OAD), a subset of glancing angle deposition (GLAD), has recently been used to enhance small molecule OPV device photoconversion efficiency by increasing the surface area of metal phthalocyanine (MPc) thin films. Here we report a detailed study of how to direct MPc film growth towards the ideal donor morphology using the techniques available to GLAD. Porous films of columnar CuPc nanostructures were achieved with strong control over the diameter, spacing and height of the columns. Special emphasis was placed on limiting column broadening as the film thickness, and resulting light absorption, was increased. Columns were grown on PEDOT:PSS coated ITO substrates to hundreds of nanometers in length while maintaining diameters of 40-50 nm and crystal grain sizes of 15-30 nm. Additionally, we provide the first demonstration of periodically seeded organic nanocolumn growth. These methods enable fabrication of uniform columnar MPc films engineered specifically for the short exciton diffusion lengths in these materials, making them suitable for ideal OPV device geometries.
机译:我们报告了使用先进的基板运动和定期播种的理想化有机光伏(OPV)体系结构的纳米化酞菁铜(CuPc)薄膜的优化。倾斜角沉积(OAD)是掠角沉积(GLAD)的一个子集,最近已通过增加金属酞菁(MPc)薄膜的表面积来提高小分子OPV器件的光转换效率。在这里,我们报告了有关如何使用GLAD的技术将MPc膜的生长导向理想的供体形态的详细研究。柱状CuPc纳米结构的多孔膜是通过对柱的直径,间距和高度进行严格控制而获得的。随着膜厚度的增加以及所产生的光吸收的增加,特别强调限制柱宽。使柱子在PEDOT:PSS涂层的ITO基板上生长到数百纳米的长度,同时保持40-50 nm的直径和15-30 nm的晶粒尺寸。此外,我们提供了定期播种有机纳米柱生长的第一个证明。这些方法可以制造出专门为这些材料中的激子扩散长度短而设计的均匀圆柱MPc膜,使其适合理想的OPV器件几何形状。

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