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首页> 外文期刊>Journal of Biophotonics >Effect of shell thickness and composition on blinking suppression and the blinking mechanism in 'giant' CdSe/CdS nanocrystal quantum dots
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Effect of shell thickness and composition on blinking suppression and the blinking mechanism in 'giant' CdSe/CdS nanocrystal quantum dots

机译:壳的厚度和成分对“巨型” CdSe / CdS纳米晶体量子点中眨眼抑制和眨眼机制的影响

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We recently developed an inorganic shell approach for suppressing blinking in nanocrystal quantum dots (NQDs) that has the potential to dramatically improve the utility of these fluorophores for single-NQD tracking of individual molecules in cell biology. Here, we consider in detail the effect of shell thickness and composition on blinking suppression, focusing on the CdSe/CdS core/ shell system. We also discuss the blinking mechanism as understood through profoundly altered blinking statistics. We clarify the dependence of blinking behavior and photostability on shell thickness, as well as on interrogation times. We show that, while the thickest-shell systerns afford the greatest advantages in terms of enhanced optical properties, thinner-shell NQDs may be adequate for certain applications requiring relatively shorter interrogation times. Shell thickness also determines the sensitivity of the NQD optical properties to aqueous-phase transfer, a critical step in rendering NQDs compatible with bioimaging applications. Lastly, we provide a proof-of-concept demonstration of the utility of these unique NQDs for fluorescent particle tracking.
机译:我们最近开发了一种用于抑制纳米晶体量子点(NQD)闪烁的无机壳方法,该方法有可能显着提高这些荧光团在细胞生物学中对单个分子进行单NQD跟踪的效用。在这里,我们详细考虑壳厚度和组成对眨眼抑制的影响,重点是CdSe / CdS核/壳系统。我们还将讨论通过深度更改的眨眼统计数据了解的眨眼机制。我们阐明了眨眼行为和光稳定性对壳厚度以及讯问时间的依赖性。我们显示,尽管最厚壳的系统在增强光学性能方面提供了最大的优势,但较薄壳的NQD可能足以满足某些需要相对较短询问时间的应用。壳的厚度还决定了NQD光学性质对水相转移的敏感性,这是使NQD与生物成像应用兼容的关键步骤。最后,我们提供了这些独特NQD用于荧光粒子跟踪的实用性的概念验证。

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