Investigation of interfacial instabilities with a two-layer slide coating process

被引:0
|
作者
Cornelia K. Buerkin
Ike de Vries
Sebastian M. Raupp
Philip Scharfer
Wilhelm Schabel
Pim Groen
机构
[1] Holst Centre,Institute of Thermal Process Engineering, Thin Film Technology
[2] Karlsruhe Institute of Technology,undefined
来源
Journal of Coatings Technology and Research | 2017年 / 14卷
关键词
Multilayer coating; Slide coating; Interfacial tension; Organic electronics; Spreading;
D O I
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中图分类号
学科分类号
摘要
Organic electronics have been thoroughly investigated due to their broad application potential, ranging from light-emitting diodes to photovoltaics. The processing of organic electronics is trending from vacuum toward wet chemical deposition, which allows fast low-cost mass production of devices with scalable dimension. One of the current challenges of wet film processing is the redissolution of already dried active materials when applying a liquid top layer. Further, increasing overall process efficiency by coating multiple liquid layers in one step raises such challenges as liquid–liquid mixing or dewetting. This article describes the experimental investigation of these instabilities for two-layer flows with organic solvents. A modified slide coating device was chosen where an extended plate after the slot exit allows prolonged observation of the flow while it travels down the plate. During experimentation, stable and unstable two-layer flows as well as different types of instabilities were detected. The key finding is a correlation of flow stability with the spreading coefficient, a combined measure of surface and interfacial tensions. Focusing on fluid properties, this paper succeeds in defining a three-dimensional stability window for a dual-layer flow.
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页码:991 / 1001
页数:10
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