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Spectral changes associated with transmission of OLED emission through human skin

机译:与通过人体皮肤传输OLED发射相关的光谱变化

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摘要

A recent and emerging application of organic light emitting diodes (OLEDs) is in wearable technologies as they are flexible, stretchable and have uniform illumination over a large area. In such applications, transmission of OLED emission through skin is an important part and therefore, understanding spectral changes associated with transmission of OLED emission through human skin is crucial. Here, we report results on transmission of OLED emission through human skin samples for yellow and red emitting OLEDs. We found that the intensity of transmitted light varies depending on the site from where the skin samples are taken. Additionally, we show that the amount of transmitted light reduces by ~ 35–40% when edge emissions from the OLEDs are blocked by a mask exposing only the light emitting area of the OLED. Further, the emission/electroluminescence spectra of the OLEDs widen significantly upon passing through skin and the full width at half maximum increases by >20 nm and >15 nm for yellow and red OLEDs, respectively. For comparison, emission profile and intensities of transmitted light for yellow and red inorganic LEDs are also presented. Our results are highly relevant for the rapidly expanding area of non-invasive wearable technologies that use organic optoelectronic devices for sensing.
机译:有机发光二极管(OLED)的最新和新兴应用是可穿戴技术,因为它们具有柔韧性,可拉伸性,并且在大面积上具有均匀的照明。在这样的应用中,OLED透过皮肤的透射是重要的部分,因此,了解与OLED通过人体皮肤的透射相关的光谱变化至关重要。在这里,我们报告了通过黄色和红色发射OLED的人体皮肤样品传输OLED发射的结果。我们发现,透射光的强度随皮肤样本的采集位置而异。此外,我们显示,当仅通过暴露OLED的发光区域的掩模遮挡OLED的边缘发射时,透射光的量将减少约35–40%。此外,OLED的发射/电致发光光谱在穿过皮肤后会显着加宽,并且黄色和红色OLED的半峰全宽分别增加> 20 nm和> 15 nm。为了进行比较,还介绍了黄色和红色无机LED的发射曲线和透射光强度。我们的结果与使用有机光电器件进行传感的非侵入性可穿戴技术的迅速发展领域高度相关。

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