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Photophysical characterization of fluorescent metal nanoclusters synthesized using oligonucleotides, proteins and small molecule ligands

机译:使用寡核苷酸,蛋白质和小分子配体合成的荧光金属纳米簇的光物理特征

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The size transition from bulk conducting metals to insulating nanoparticles and eventually to single atoms passes through the relatively unexplored few-atom nanocluster region. With dimensions close to the Fermi wavelength, these nanoclusters demonstrate molecule-like properties distinct from bulk metals or atoms, such as discrete and size-tunable electronic transitions which lead to photoluminescence. Current research aims to elucidate the fundamental photophysical properties of metal nanoclusters made by different means and based on different encapsulation agents. Here, we report the study of the photophysical properties, including quantum yields, lifetimes, extinction coefficients, blinking dynamics and sizes, of silver and gold nanoclusters synthesized using oligonucleotides, a protein (bovine serum albumin) and a Good's buffer molecule (MES, 2-(N-morpholino) ethanesulfonic acid) as encapsulation agents. We also investigate the change of photoluminescence as a function of temperature. Furthermore, we show that the fluorescent metal clusters can be used as a donor in forming a resonance energy transfer pair with a commercial organic quencher. These new fluorophores have great potential as versatile tools for a broad range of applications in biological and chemical detection.
机译:从块状导电金属到绝缘纳米粒子,再到单个原子的尺寸过渡穿过相对未开发的少数​​原子纳米簇区域。这些纳米团簇的尺寸接近费米波长,显示出不同于块状金属或原子的分子状特性,例如离散的和尺寸可调的电子跃迁,这些跃迁导致光致发光。当前的研究旨在阐明通过不同方式和基于不同包封剂制备的金属纳米团簇的基本光物理性质。在这里,我们报告了使用寡核苷酸,蛋白质(牛血清白蛋白)和Good's缓冲分子(MES,2)合成的银和金纳米团簇的光物理性质的研究,包括量子产率,寿命,消光系数,眨眼动力学和大小, -(N-吗啉代)乙磺酸作为包封剂。我们还研究了光致发光随温度的变化。此外,我们表明,荧光金属簇可以用作与商业有机淬灭剂形成共振能量转移对的供体。这些新型荧光团作为多功能工具具有巨大的潜力,可广泛应用于生物和化学检测中。

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