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Thiolate–Protected Gold Nanoparticles Via Physical Approach: Unusual Structural and Photophysical Characteristics

机译:通过物理方法保护硫醇的金纳米颗粒:异常的结构和光物理特征

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摘要

Here we report a novel physical approach for thiolate–protected fluorescent gold nanoparticles with a controlled size of the order of a few nanometers. This approach is based on a sputtering of gold into a liquid matrix containing thiolate ligand as a stabilizer at various concentrations, thus no reductant was used. The size of the gold nanoparticles was successfully controlled to range from 1.6 to 7.4 nm by adjusting the thiol concentrations. Surface plasmon absorption was observed in larger nanoparticles, but it was not observed in smaller ones. Such smaller nanoparticles fluoresced at around 670 nm with a small spectral shift according to their size, however, the diameter (1.6–2.7 nm) was very strange to show such red emission compared with photophysical characteristics of reported gold cluster or nanoparticles synthesized by chemical method. By detailed investigations using TEM, HAADF-STEM, XPS, and TGA, and size fractionation by size exclusion chromatography, we finally arrived at the plausible mechanism for the origin of unusual fluorescence property; the obtained gold nanoparticles are not single-crystal and are composed of aggregates of very small components such as multinuclear gold clusters or complexes.
机译:在这里,我们报告了一种新的物理方法,该方法可用于硫醇盐保护的荧光金纳米粒子,其受控大小约为几纳米。该方法基于将金溅射到含有硫醇盐配体作为稳定剂的各种浓度的液体基质中,因此不使用还原剂。通过调节硫醇的浓度,成功地将金纳米颗粒的尺寸控制在1.6至7.4nm之间。在较大的纳米颗粒中观察到了表面等离子体吸收,但在较小的纳米颗粒中未观察到。此类较小的纳米粒子在670 nm处发出荧光,并随其尺寸发生较小的光谱偏移,但是,与报道的金团簇或通过化学方法合成的纳米粒子的光物理特性相比,直径(1.6–2.7 nm)非常奇怪,显示出这种红色发射。通过使用TEM,HAADF-STEM,XPS和TGA的详细研究,以及通过尺寸排阻色谱进行尺寸分级,我们最终得出了异常荧光性质起源的合理机制。所获得的金纳米粒子不是单晶的,而是由非常小的组分(如多核金簇或络合物)的聚集体组成。

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