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Growth of highly fluorescent polyethylene glycol- and zwitterion- functionalized gold nanoclusters

机译:高荧光聚乙二醇和两性离子官能化的金纳米团簇的生长

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摘要

We have prepared and characterized a new set of highly fluorescent gold nanoclusters (AuNCs) using one-step aqueous reduction of a gold precursor in the presence of bidentate ligands made of lipoic acid anchoring groups, appended with either a poly(ethylene glycol) short chain or a zwitterion group. The AuNCs fluoresce in the red to near-infrared region of the optical spectrum with emission centered at ~750 nm and a quantum yield of ~10-14%, and they exhibit long fluorescence lifetimes (up to ~300 ns). Dispersions of these AuNCs exhibit great long-term colloidal stability, over a wide range of pHs (2-13) and in the presence of high electrolyte concentrations, and a strong resistance to reducing agents such as glutathione. The growth strategy further permitted the controlled, in situ functionalization of the NCs with reactive groups (e.g., carboxylic acid or amine), making these nanoclusters compatible with common and simple-to-implement coupling strategies, such as carbodiimide chemistry. These properties combined make these fluorescent NCs greatly promising for use in various imaging and sensing applications where NIR and long-lived excitations are desired.
机译:我们已经准备并表征了一套新的高荧光金纳米簇(AuNCs),该工艺使用金前驱物的一步水还原,在由硫辛酸锚定基团制成的双齿配体存在下,附加了聚(乙二醇)短链或两性离子基团。 AuNCs在光谱的红色至近红外区域发荧光,发射中心为〜750 nm,量子产率为〜10-14%,并且它们具有长的荧光寿命(高达〜300 ns)。这些AuNCs的分散液在很宽的pH值范围(2-13)以及高电解质浓度下均表现出良好的长期胶体稳定性,并且对还原剂(如谷胱甘肽)具有很强的抵抗力。该生长策略进一步允许具有反应性基团(例如,羧酸或胺)的NC的受控,原位官能化,从而使这些纳米团簇与诸如碳二亚胺化学之类的常见且易于实现的偶联策略兼容。这些特性的结合使这些荧光NC非常有望用于需要近红外和长寿命激发的各种成像和传感应用中。

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