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首页> 外文期刊>Journal of the Society for Information Display >Reversible surface modification of polydimethylsiloxane film for stretchable display
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Reversible surface modification of polydimethylsiloxane film for stretchable display

机译:可拉伸显示器用聚二甲基硅氧烷薄膜的可逆表面改性

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摘要

A polydimethylsiloxane (PDMS) film is the most widely used elastomeric substrate for stretchable electronic devices. However, it is difficult to directly deposit a metal layer on the PDMS film because many defects such as cracks and wrinkles in the metal layer form too easily. This problem can be addressed by modifying the film surface rigidly through some surface oxidation processes. However, this rigid surface should be removed after the fabrication process is completed because the surface may induce lots of cracks on the PDMS film when the fabricated stretchable electronic device is used in a stretching state. In this study, a wet etching process using a buffered HF (BHF) solution is used to effectively remove the rigid surfaceformed on the PDMS film and to dramatically reduce the crack lines formed after the PDMS film stretching. Hence, areversible process for controlling the mechanical properties of the PDMS film surface was established. According tosome analysis results, the rigid surface formed by UV ozone exposure on the PDMS film was found to have apolysiloxane network structure including more silicon atoms bound to three oxygens, and the surface etched by BHFsolution was found to be recovered to the similar structure with that of the PDMS film.
机译:聚二甲基硅氧烷(PDMS)膜是可拉伸电子设备中使用最广泛的弹性体基材。但是,由于在金属层中容易形成裂纹,褶皱等许多缺陷,因此难以在PDMS膜上直接沉积金属层。这个问题可以通过一些表面氧化过程刚性地改变膜表面来解决。然而,该刚性表面应在制造过程完成之后去除,因为当在拉伸状态下使用所制造的可拉伸电子器件时,该表面可能在PDMS膜上引起大量裂纹。在这项研究中,使用缓冲的HF(BHF)溶液的湿法蚀刻工艺可有效去除PDMS膜上形成的刚性表面并显着减少PDMS膜拉伸后形成的裂纹线。因此,建立了控制PDMS膜表面机械性能的可逆过程。根据一些分析结果,发现在PDMS膜上通过紫外线臭氧暴露形成的刚性表面具有聚硅氧烷网络结构,该结构包含更多的与三个氧键合的硅原子,并且发现通过BHFsolution蚀刻的表面恢复为与该结构相似的结构。 PDMS胶片。

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