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论DNA稳定的银纳米簇的化学稳定性。

On the Chemical Stability of DNA-Stabilized Silver Nanoclusters.

作者信息

Romolini Giacomo, Cerretani Cecilia, Mollerup Christian Brinch, Vosch Tom

机构信息

Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100 Copenhagen, Denmark.

Department of Forensic Medicine, University of Copenhagen, Frederik V's Vej 11, DK-2100 Copenhagen, Denmark.

出版信息

ACS Omega. 2024 Nov 12;9(47):47248-47253. doi: 10.1021/acsomega.4c08322. eCollection 2024 Nov 26.

Abstract

DNA-stabilized silver nanoclusters (DNA-AgNCs) are atomically precise emitters, whose chemical stability is commonly defined by their stable optical response over time. Here, two isotopically pure versions (Ag and Ag) of DNA-[AgCl] were mixed, and we demonstrate for the first time for DNA-AgNCs that silver atoms are continuously exchanged between individual clusters. This atom exchange was monitored by time-resolved mass spectrometry. Depending on the temperature, the exchange happens on a time scale of minutes to hours, while DNA-[AgCl] retains its ensemble spectroscopic features. Based on the time constants and the available crystal structure, we hypothesized the following exchange mechanism: formation of transient dimers followed by atom exchange between the two entities. A further and slower exchange of the swapped Ag atoms within the rest of the clusters occurs at a much slower time scale. Our findings shed new light on the meaning of chemical stability for this class of fluorophores and show that these systems can be structurally dynamic at the molecular level, while maintaining stable ensemble spectroscopic properties. Our results also explain why DNA-AgNCs are good sensors, as the dynamic nature of DNA-AgNCs allows for competing interactions, altering their optical response.

摘要

DNA稳定的银纳米簇(DNA-AgNCs)是原子精确的发光体,其化学稳定性通常由其随时间的稳定光学响应来定义。在此,将两种同位素纯的DNA-[AgCl]版本(Ag和Ag)混合,并且我们首次证明了对于DNA-AgNCs,银原子在单个簇之间持续交换。这种原子交换通过时间分辨质谱法进行监测。根据温度的不同,交换发生在几分钟到几小时的时间尺度上,而DNA-[AgCl]保留其整体光谱特征。基于时间常数和可用的晶体结构,我们推测了以下交换机制:形成瞬态二聚体,随后两个实体之间进行原子交换。在其余簇内交换的Ag原子进一步且较慢的交换发生在慢得多的时间尺度上。我们的发现为这类荧光团的化学稳定性的意义提供了新的见解,并表明这些系统在分子水平上可以是结构动态的,同时保持稳定的整体光谱性质。我们的结果还解释了为什么DNA-AgNCs是良好的传感器,因为DNA-AgNCs的动态性质允许竞争性相互作用,改变它们的光学响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efb0/11603216/22ef682733c5/ao4c08322_0001.jpg

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