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Ultraviolet to blue blocking and wavelength convertible films using carbon dots for interrupting eye damage caused by general lighting

机译:蓝色阻挡和波长可换膜的紫外线使用碳点来中断一般照明引起的眼睛损坏

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摘要

Our eyes are regularly exposed to ultraviolet (UV) and blue light emitting diode (LED) light-based devices. However, the blue light induces macular degeneration, optic nerve crush, eye strain, and increases reactive oxygen species, which negatively influence eye-related cells (photoreceptor and retinal pigmented epithelial cells). UV light is also harmful to humans. It induces photokeratitis, cataract, and ocular surface squamous neoplasia. Here, we present carbon dot films with different carbon dot contents, prepared by a simple method. The films exhibit strong UV and blue light absorption. The transmittance of carbon dot films is > 70% in the visible region ( > 500 nm). The UV light blocking ratio of commercial blue blocking filter and carbon dot film using UV LED chips is 94.1% and 95.9% (40 wt%), respectively. The blue light blocking ratio of commercial blue blocking filter and carbon dot film using blue LED chips is 10.2% and 82.3% (40 wt%), respectively. These results indicate that the prepared carbon dot films have a UV blocking rate similar to that of commercial blue blocking filters and a much better blue blocking rate than commercial blue blocking fillers. Therefore, they can be effectively used as UV and blue blocking films in various applications.
机译:我们的眼睛经常暴露于紫外(UV)和蓝色发光二极管(LED)基于光的装置。然而,蓝光诱导黄斑变性,视神经挤压,眼睛菌株,并增加反应性氧物种,对眼睛有关的细胞产生负面影响(感光体和视网膜色素上皮细胞)。紫外线也对人类有害。它会诱导光电炎,白内障和眼表面鳞状肿瘤瘤。在这里,我们通过简单的方法呈现具有不同碳点含量的碳点薄膜。薄膜表现出强大的紫外线和蓝光吸收。在可见区域(> 500nm)中,碳点膜的透射率> 70%。使用紫外LED芯片的商业蓝色阻塞过滤器和碳点膜的UV光阻滞比例分别为94.1%和95.9%(40wt%)。使用蓝色LED芯片的商用蓝色阻塞过滤器和碳点薄膜的蓝光阻滞比分别为10.2%和82.3%(40wt%)。这些结果表明,制备的碳点膜具有与商业蓝色阻挡滤光器的UV阻挡速率,以及比商业蓝色阻挡填料更好的蓝色阻挡率。因此,它们可以有效地用作各种应用中的UV和蓝色阻挡膜。

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