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Fluorescence Quenching of CdTe Nanocrystals by Bound Gold Nanoparticles in Aqueous Solution

机译:束缚金纳米粒子在水溶液中对CdTe纳米晶体的荧光猝灭。

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摘要

Water-soluble gold nanoparticles with an average diameter of 5 nm were prepared with carboxylic acid terminated thiol ligands. These ligands contain zero to eight methylene moieties. CdTe nanocrystals with an average diameter of 5 nm were synthesized with aminoethanethiol capping. These nanocrystals displayed characteristic absorption and emission spectra of quantum dots. The amine terminated CdTe nanocrystals and carboxylic-acid-terminated gold nanoparticles were conjugated in aqueous solution at pH 5.0 by electrostatic interaction, and the conjugation was monitored with fluorescence spectroscopy. The CdTe nanocrystals were significantly quenched upon binding with gold nanoparticles. The quenching efficiency was affected by both the concentration of gold nanoparticles in the complex and the length of spacer between the CdTe nanocrystal and Au nanoparticle. The observed quenching was explained using Förster resonance energy transfer (FRET) mechanism, and the Förster distance was estimated to be 3.8 nm between the donor-acceptor pair.
机译:用羧酸封端的硫醇配体制备平均直径为5nm的水溶性金纳米颗粒。这些配体包含零至八个亚甲基部分。用氨基乙硫醇封端合成平均直径为5 nm的CdTe纳米晶体。这些纳米晶体显示出量子点的特征吸收和发射光谱。通过静电相互作用将胺封端的CdTe纳米晶体和羧酸封端的金纳米颗粒在pH 5.0的水溶液中偶联,并用荧光光谱法监测偶联。与金纳米颗粒结合后,CdTe纳米晶体被显着淬灭。猝灭效率受络合物中金纳米颗粒的浓度以及CdTe纳米晶体和Au纳米颗粒之间的间隔物长度的影响。使用Förster共振能量转移(FRET)机制解释了观察到的猝灭,并且供体-受体对之间的Förster距离估计为3.8 nm。

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