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Flexible quantum dot light-emitting devices for targeted photomedical applications

机译:用于目标光医学应用的柔性量子点发光器件

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摘要

Quantum dot light-emitting devices (QLEDs), originally developed for displays, were recently demonstrated to be promising light sources for various photomedical applications, including photodynamic therapy cancer cell treatment and photobimodulation cell metabolism enhancement. With exceptional emission wavelength tunability and potential flexibility, QLEDs could enable wearable, targeted photomedicine with maximized absorption of different medical photosensitizers. In this paper, we report, for the first time, the in vitro study to demonstrate that QLEDs-based photodynamic therapy can effectively kill Methicillin-resistant Staphylococcus aureus, an antibiotic-resistant bacterium. We then present successful synthesis of highly efficient quantum dots with narrow spectra and specific peak wavelengths to match the absorption peaks of different photosensitizers for targeted photomedicine. Flexible QLEDs with a peak external quantum efficiency of 8.2% and a luminance of over 20,000 cd/m2 at a low driving voltage of 6 V were achieved. The tunable, flexible QLEDs could be employed for oral cancer treatment or diabetic wound repairs in the near future. These results represent one fresh stride toward realizing QLEDs’ long-term goal to enable the wide clinical adoption of photomedicine.
机译:最初为显示器开发的量子点发光器件(QLED)最近被证明是用于各种光医学应用的有前途的光源,包括光动力疗法,癌细胞治疗和光双调细胞代谢增强。凭借出色的发射波长可调性和潜在的灵活性,QLED可以实现可穿戴的,有针对性的光医学,并最大限度地吸收不同的医学光敏剂。在本文中,我们首次进行了体外研究,以证明基于QLED的光动力疗法可以有效杀死耐甲氧西林的金黄色葡萄球菌(一种耐药菌)。然后,我们提出了具有窄光谱和特定峰波长的高效量子点的成功合成方法,以匹配针对目标光医学的不同光敏剂的吸收峰。获得了柔性QLED,其在6 V的低驱动电压下具有8.2%的峰值外部量子效率和超过20,000 cd / m 2 的亮度。可调节,灵活的QLED可在不久的将来用于口腔癌治疗或糖尿病伤口修复。这些结果代表了实现QLEDs的长期目标的新进展,以实现光医学的广泛临床应用。

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