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Bright luminescence from pure DNA-curcumin–based phosphors for bio hybrid light-emitting diodes

机译:来自纯基于姜黄素的荧光粉用于生物混合发光二极管的明亮发光

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摘要

Recently, significant advances have occurred in the development of phosphors for bio hybrid light-emitting diodes (Bio-HLEDs), which have created brighter, metal-free, rare-earth phosphor-free, eco-friendly, and cost-competitive features for visible light emission. Here, we demonstrate an original approach using bioinspired phosphors in Bio-HLEDs based on natural deoxyribonucleic acid (DNA)-curcumin complexes with cetyltrimethylammonium (CTMA) in bio-crystalline form. The curcumin chromophore was bound to the DNA double helix structure as observed using field emission tunnelling electron microscopy (FE-TEM). Efficient luminescence occurred due to tightly bound curcumin chromophore to DNA duplex. Bio-HLED shows low luminous drop rate of 0.0551 s−1. Moreover, the solid bio-crystals confined the activating bright luminescence with a quantum yield of 62%, thereby overcoming aggregation-induced quenching effect. The results of this study herald the development of commercially viable large-scale hybrid light applications that are environmentally benign.
机译:最近,在用于生物混合发光二极管(Bio-HLED)的荧光粉的开发方面取得了重大进展,该荧光粉为LED创造了更明亮,不含金属,不含稀土的荧光粉,环保且具有成本竞争力的特性。可见光发射。在这里,我们展示了基于天然脱氧核糖核酸(DNA)-姜黄素复合物与十六烷基三甲基铵(CTMA)的生物晶体形式的Bio-HLED中使用生物启发性荧光粉的原始方法。如使用场发射隧穿电子显微镜(FE-TEM)所观察到的,姜黄素发色团结合到DNA双螺旋结构。由于姜黄素发色团与DNA双链体紧密结合,因此产生了有效的发光。 Bio-HLED的发光下降率很低,仅为0.0551ss -1 。此外,固体生物晶体以62%的量子产率限制了活化的明亮发光,从而克服了聚集诱导的猝灭作用。这项研究的结果预示着对环境有益的商业可行的大规模混合照明应用的发展。

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