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薄膜多层电光器件的组合制备与表征

Combinatorial preparation and characterization of thin-film multilayer electro-optical devices.

作者信息

Neuber Christian, Bäte Markus, Thelakkat Mukundan, Schmidt Hans-Werner, Hänsel Helmut, Zettl Heiko, Krausch Georg

机构信息

Makromolekulare Chemie I und Bayreuther Institut für Makromolekülforschung (BIMF), Universität Bayreuth, D-95440 Bayreuth, Germany.

出版信息

Rev Sci Instrum. 2007 Jul;78(7):072216. doi: 10.1063/1.2756993.

Abstract

In this article we present a setup for the combinatorial vapor deposition of thin-film multilayer devices as well as methods for the fast and efficient analytic screening of the libraries obtained. The preparation setup is based on a commercially available evaporation chamber equipped with various evaporation sources for both organic and metallic materials. The combinatorial approach is realized by the combination of a rotation stage for the substrate, a five-mask sampler, and an additional mask whose position can be deliberately varied along one axis during the evaporation process. The latter is used to evaporate linear as well as step gradients by continuous or stepwise movement of a shutter mask. The mask sampler allows to define the sectors of the library and to evaporate more complex structures, e.g., an electrode layout. Finally, the simultaneous evaporation of two or more materials enables us to produce layers of varying composition ratio in general and doped materials, in particular. For the control of the evaporation process we have developed an automation software, which is particularly helpful for complex library designs and which grants excellent repeatability of experiments. Efficient and fast characterization of the obtained libraries is realized by (i) a purely optical setup and (ii) an electro-optical setup. (i) The UV/vis reader FLASHScan 530 permits to map out the UV/vis absorbance or fluorescence of the whole library. The UV/vis absorbance is primarily used to determine layer thicknesses and to confirm thickness uniformity across larger regions. The fluorescence measurements are used to determine the composition of layers containing fluorescent dyes. (ii) For a detailed short- and long-term electro-optical analysis we have developed an automated measurement system, which allows the characterization of 8x8 optoelectronic devices and to study their degradation behavior. Both solar cells and organic light-emitting diodes can be tested. Finally, we have developed a data analysis software to extract characteristic values from the huge amount of data and with this facilitate the finding of systematic dependencies.

摘要

在本文中,我们介绍了一种用于薄膜多层器件组合气相沉积的装置,以及对所得库进行快速高效分析筛选的方法。制备装置基于一个商用蒸发室,配备了用于有机和金属材料的各种蒸发源。组合方法是通过将用于基板的旋转台、五掩膜采样器以及一个附加掩膜相结合来实现的,该附加掩膜的位置在蒸发过程中可沿一个轴有意地变化。后者用于通过快门掩膜的连续或逐步移动来蒸发线性以及阶梯梯度。掩膜采样器允许定义库的扇区并蒸发更复杂的结构,例如电极布局。最后,同时蒸发两种或更多种材料使我们能够一般地生产具有不同组成比的层,特别是掺杂材料。为了控制蒸发过程,我们开发了一种自动化软件,这对于复杂的库设计特别有帮助,并且能保证实验具有出色的可重复性。通过(i)纯光学装置和(ii)电光装置实现对所得库的高效快速表征。(i)UV/vis读取器FLASHScan 530允许绘制整个库的UV/vis吸光度或荧光图。UV/vis吸光度主要用于确定层厚度并确认较大区域内的厚度均匀性。荧光测量用于确定含有荧光染料的层的组成。(ii)为了进行详细的短期和长期电光分析,我们开发了一种自动化测量系统,该系统允许对8×8光电器件进行表征并研究其降解行为。太阳能电池和有机发光二极管均可进行测试。最后,我们开发了一种数据分析软件,以从大量数据中提取特征值,从而便于发现系统相关性。

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