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Stabilization of discotic liquid organic thin films by ITO surface treatment

机译:通过ITO表面处理稳定盘状液态有机薄膜

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摘要

Discotic liquid crystals (LCs) are promising materials in the field of electronic components and, in particular, to make efficient photovoltaic cells due to their good charge transport properties. These materials generally exhibit a mesophase in which the disk-shaped molecules can self-assemble into columns, which favorize charge displacement, and may align themselves uniformly on surfaces to form well-oriented thin films. In order to orientate such a columnar thin film on an indium tin oxide (ITO) substrate, the film is heated up to the temperature range of the isotropic liquid phase and subsequently cooled down again. This treatment may lead not only to the desired alignment, but also to dewetting, which leads to an appreciable inhomogeneity in film thickness and to short circuits during the realization of photovoltaic cells. In this article, we describe how this dewetting and the film morphology can be influenced by ITO surface treatments. The chemical modifications of the surface by these treatments were studied by X-ray photoelectron spectroscopy (XPS). Such ITO treatments are shown to be efficient to prevent thin film dewetting when combined with rapid cooling through the isotropic-to-LC phase transition. (c) 2006 Elsevier B.V. All rights reserved.
机译:盘状液晶(LC)在电子组件领域是有前途的材料,并且由于其良好的电荷传输特性,特别是制造高效的光伏电池。这些材料通常表现出中间相,在该中间相中,盘状分子可以自组装成柱状,这有利于电荷位移,并且可以使其自身在表面上均匀排列以形成取向良好的薄膜。为了使这种柱状薄膜取向在铟锡氧化物(ITO)衬底上,将膜加热到各向同性液相的温度范围,然后再次冷却。该处理不仅可以导致期望的对准,而且可以导致去湿,这导致膜厚度明显可观的不均匀性并且在实现光伏电池期间导致短路。在本文中,我们描述了ITO表面处理如何影响这种去湿和薄膜形态。通过X射线光电子能谱(XPS)研究了这些处理对表面的化学改性。当与通过各向同性到LC相变的快速冷却相结合时,这种ITO处理有效地防止了薄膜的去湿。 (c)2006 Elsevier B.V.保留所有权利。

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