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Highly Flexible and Efficient Fabric-Based Organic Light-Emitting Devices for Clothing-Shaped Wearable Displays

机译:高度灵活高效的基于织物的有机发光器件,用于服装形可穿戴显示器

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摘要

Abstract Recently, the role of clothing has evolved from merely body protection, maintaining the body temperature, and fashion, to advanced functions such as various types of information delivery, communication, and even augmented reality. With a wireless internet connection, the integration of circuits and sensors, and a portable power supply, clothes become a novel electronic device. Currently, the information display is the most intuitive interface using visualized communication methods and the simultaneous concurrent processing of inputs and outputs between a wearer and functional clothes. The important aspect in this case is to maintain the characteristic softness of the fabrics even when electronic devices are added to the flexible clothes. Silicone-based light-emitting diode (LED) jackets, shirts, and stage costumes have started to appear, but the intrinsic stiffness of inorganic semiconductors causes wearers to feel discomfort; thus, it is difficult to use such devices for everyday purposes. To address this problem, a method of fabricating a thin and flexible emitting fabric utilizing organic light-emitting diodes (OLEDs) was developed in this work. Its flexibility was evaluated, and an analysis of its mechanical bending characteristics and tests of its long-term reliability were carried out.
机译:摘要最近,服装的作用已从Movitel Protection,保持体温和时尚,以先进的功能等各种类型的信息传递,通信,甚至增强现实。通过无线互联网连接,电路和传感器的集成以及便携式电源,衣服成为一种新型电子设备。目前,信息显示是使用可视化通信方法的最直观的界面,以及佩戴者和功能衣服之间的输入和输出的同时并发处理。这种情况下的重要方面是即使当电子设备添加到柔性衣服时,也要保持织物的特征柔软性。基于硅氧烷的发光二极管(LED)夹克,衬衫和舞台服装已经开始出现,但无机半导体的固有刚度导致佩戴者感到不适;因此,难以用于日常目的的这种装置。为了解决这个问题,在这项工作中开发了一种制造利用有机发光二极管(OLED)的薄型和柔性发射织物的方法。进行了其灵活性,并进行了对其机械弯曲特性的分析和其长期可靠性的测试。

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