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Coordination-induced emission enhancement in gold-nanoclusters with solid-state quantum yields up to 40% for eco-friendly, low-reabsorption nano-phosphors

机译:配合物诱导的金纳米团簇的发射增强,固态量子产率高达40%,适用于环保,低重吸收的纳米磷光体

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Colloidal quantum dots (CQDs) have gained much attention as light-emitting materials for light-conversion nano-phosphors and luminescent solar concentrators. Unfortunately, those CQDs involve toxic heavy metals and frequently need to be synthesized in the hazardous organic solvent. In addition, they suffer from severe solid-state aggregation-induced self-quenching and reabsorption losses. To address these issues, here we prepare Zn-coordinated glutathione-stabilized gold-nanocluster (Zn-GSH-AuNCs) assemblies without involving heavy metals and organic solvent. Unlike GSH-AuNCs dispersed in an aqueous solution with poor photoluminescence quantum yields (PL-QYs, typically ~1%), those Zn-GSH-AuNCs powders hold high solid-state PL-QYs up to 40?±?5% in the aggregated state. Such Zn-induced coordination-enhanced emission (CEE) is attributed to the combined effects of suppressed non-radiative relaxation and enhanced charge-transfer interaction. In addition, they also exhibit a large Stokes shift, thus mitigating both aggregation-induced self-quenching and reabsorption losses. Motivated by these photophysical properties, we demonstrated white-light emission from all non-toxic, aqueous-synthesis nano-materials.
机译:胶体量子点(CQD)作为用于光转换纳米磷光体和发光太阳能聚光器的发光材料受到了广泛关注。不幸的是,这些CQD涉及有毒的重金属,并且经常需要在有害的有机溶剂中合成。另外,它们遭受严重的固态聚集诱导的自猝灭和重吸收损失。为了解决这些问题,我们在这里准备了锌配位的谷胱甘肽稳定的金纳米簇(Zn-GSH-AuNCs)组件,而无需涉及重金属和有机溶剂。与分散在水溶液中的GSH-AuNCs的光致发光量子产率不佳(PL-QYs,通常为〜1%)不同,这些Zn-GSH-AuNCs粉末在样品中的固态PL-QYs高达40%±5%。聚集状态。这种锌诱导的配位增强发射(CEE)归因于抑制的非辐射弛豫和增强的电荷转移相互作用的综合作用。此外,它们还表现出较大的斯托克斯频移,从而减轻了聚集引起的自猝灭和重吸收损失。受这些光物理特性的激励,我们证明了所有无毒的水性合成纳米材料的白光发射。

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