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Photoluminescence enhancement of carbon dots by gold nanoparticles conjugated via PAMAM dendrimers

机译:光致发光增强的碳点金纳米粒子通过PAMAM共轭树枝状分子

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摘要

Carbon dots (CDs) have many fascinating fluorescent properties, however, their low quantum yield limits their applications. In this study, the photoluminescence (PL) of CDs in the vicinity of gold nanoparticles (Au NPs) is enhanced significantly due to the surface plasmon resonance (SPR) of the Au NPs. This is; achieved by conjugating Au NPs and CDs to dendrimers (PAMAM) through an amidation reaction, resulting in the formation of the Au-PAMAM-CD conjugates. The maximum 62-fold enhancement was obtained with an optimized molar ratio between Au NPs, PAMAM, and CDs. In this process, PAMAM, which serves as a spacer, can keep Au NPs and CDs at an appropriate distance for PL enhancement. The adjustment of the amount of Au NPs or CDs linked to PAMAM can induce the optimum PL enhancement. This strategy can be easily applied to different metal-space-fluorophore systems to enhance the fluorescence of fluorophores.
机译:碳点(CDs)有许多迷人的荧光性质,然而,他们的低量子产率限制了他们的应用程序。研究中,光致发光(PL)的cd黄金纳米粒子(Au NPs)附近由于表面等离子体增强明显非盟NPs的共振(SPR)。通过接合盟NPs树枝状分子和cd(PAMAM)通过酰胺化反应,生成的形成的Au-PAMAM-CD共轭。最大62倍得到增强一个优化的摩尔比率盟NPs, PAMAM,和cd。垫片,可以保持盟NPs和cd的适当的距离PL增强。调整的非盟NPs或cd联系在一起PAMAM可以诱导最佳PL增强。这种策略可以很容易地应用到不同metal-space-fluorophore系统来提高荧光团的荧光。

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