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Dimerization of organic dyes on luminescent gold nanoparticles for ratiometric pH sensing

机译:有机染料在发光金纳米颗粒上的二聚作用用于比率式pH传感

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摘要

Synergistic effects arising from the conjugation of organic dyes onto non-luminescent metal nanoparticles (NPs) have greatly broadened their applications in both imaging and sensing. Herein, we report that conjugation of a well-known pH-insensitive dye, tetramethyl-rhodamine (TAMRA), to pH-insensitive luminescent gold nanoparticles (AuNPs) can lead to an ultrasmall nanoindicator that can fluorescently report local pH in a ratiometric way. Such synergy originated from the dimerization of TAMRA on AuNPs, of which geometry was very sensitive to surface charges of the AuNPs and can be reversely modulated through protonation of surrounding glutathione ligands. Not limited to pH-insensitive dyes, this pH-dependent dimerization can also enhance the pH sensitivity of fluorescein, a well-known pH-sensitive dye, within a larger pH range, opening up a new pathway to design ultrasmall fluorescent ratiometric nanoindicators with tunable wavelengths and pH response ranges.
机译:有机染料与不发光金属纳米粒子(NP)结合产生的协同效应极大地拓宽了它们在成像和传感领域的应用。在本文中,我们报道了众所周知的pH不敏感染料四甲基罗丹明(TAMRA)与pH不敏感发光金纳米颗粒(AuNPs)的共轭可导致超小型纳米指示剂,该指示剂可以按比例方式荧光报告局部pH。这种协同作用源于AuNPs上TAMRA的二聚作用,其几何形状对AuNPs的表面电荷非常敏感,可以通过周围谷胱甘肽配体的质子化来反向调节。这种不依赖于pH敏感的染料,这种依赖于pH的二聚作用还可以在更大的pH范围内增强荧光素(一种众所周知的pH敏感染料)的pH敏感性,从而开辟了一条设计可调谐的超小型荧光比率纳米指标的新途径波长和pH响应范围。

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