Substrate Treatment Evaluation and Their Impact on Printing Results for Wearable Electronics

IF 1.9 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Saleem Khan, Shawkat Ali, Arshad Khan, Bo Wang, T. Al-Ansari, A. Bermak
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引用次数: 1

Abstract

This paper presents a comparative study on the treatment techniques for flexible polymeric substrates and their impact on the printing results. Substrate treatments are central to optimization of the printing processes and a strict set of requirements are needed to achieve uniform and acceptable printing results. Therefore, this research is highlighting the most significant treatment methods used for fine-tuning the surface properties of different polymeric substrates. Besides the two commonly used treatment techniques of oxygen plasma and ultraviolet ozone, a new method of using surface cleaning liquid is applied for rapid treatment of polymeric substrates. Comparative study is carried out on the basis of cleaning steps required for substrate preparation, processing, robustness as well as on the final printed results on the substrates. All the three treatment techniques with similar processing protocol are applied on a single type of polyimide (PI) substrate. To further validate the applicability and manufacture of practical devices, the liquid cleaning method is also applied on Polyethylene terephthalate substrates for making proof-of-concept wearable temperature sensor. From the study it is concluded that the liquid surface cleaning method is advantageous in terms of easy processing, robustness and producing uniform printing results on diverse polymeric substrates.
基板处理评价及其对可穿戴电子产品印刷效果的影响
本文比较研究了柔性聚合物基材的处理技术及其对印刷效果的影响。基材处理是优化印刷过程的核心,需要一套严格的要求来实现统一和可接受的印刷结果。因此,本研究突出了用于微调不同聚合物衬底表面性能的最重要的处理方法。除了氧等离子体和紫外臭氧两种常用的处理技术外,还提出了一种使用表面清洗液进行聚合物基材快速处理的新方法。根据基材制备、加工、坚固性所需的清洗步骤以及基材上的最终印刷结果进行比较研究。这三种具有相似处理方案的处理技术都应用于单一类型的聚酰亚胺(PI)衬底上。为了进一步验证实际设备的适用性和制造,还将液体清洗方法应用于聚对苯二甲酸乙二醇酯基板上,以制作概念验证的可穿戴温度传感器。研究结果表明,液体表面清洗方法具有易于加工、坚固耐用、在不同聚合物基材上印刷效果均匀等优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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