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Modelling of a vacuum metallization patterning method for organic electronics

机译:有机电子真空金属化图案化方法的建模

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The high throughput roll-to-roll patterning of metal thin films could be used to create organic functional devices. In this paper we present research into the compatibility of an in-vacuum selective metallization technique, which uses a sacrificial oil to define the metal electrode pattern for functional devices. The exact mechanism of the sacrificial oil masking, pattern definition and oil vaporization, due to the radiant heating from the thermal evaporation source, is described from previous research and experimental findings. The thermal modelling of this process develops further the requirements for the masking oil. It is found that in this particular system the oil thickness must be 1.63 +/- 0.31 nn to match the radiative energy, and not be evaporated prior to leaving the metallization zone or to remain, as excess, after metallization is complete. The temperatures required are low and compatible with heat sensitive functional organic materials. The definition of the metal pattern edges is found to be like the liquid oil but thermal modelling still supports the theory of the oil vapor having the largest masking effect and concludes that the pattern definition quality does not depend on the sacrificial oil masking or vaporization effects but on the flexography patterning.
机译:金属薄膜的高通量滚动图案化可用于产生有机功能装置。在本文中,我们向真空选择性金属化技术的兼容性提出了研究,该技术使用牺牲油来限定功能装置的金属电极图案。牺牲墨水掩模,图案定义和汽化由于来自热蒸发源的辐射加热的精确机制,是从先前的研究和实验结果中描述的。该过程的热建模进一步发展了掩蔽油的要求。发现,在这种特殊的系统中,油厚度必须为1.63 +/- 0.31 nn以匹配辐射能量,并且在将金属化区域留下或保持过量之前,不蒸发在金属化完成后。所需的温度低且与热敏功能有机材料相容。发现金属图案边缘的定义是液体油,但热建模仍然支持具有最大掩蔽效果的油蒸汽的理论,并得出结论,图案定义质量不依赖于牺牲油掩蔽或汽化效应在柔版图案上。

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