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光致相转移将发光量子点转移到极性和水相介质中。

Photoinduced phase transfer of luminescent quantum dots to polar and aqueous media.

机构信息

Department of Chemistry and Biochemistry, Florida State University, 95 Chieftan Way, Tallahassee, Florida 32306, USA.

出版信息

J Am Chem Soc. 2012 Oct 3;134(39):16370-8. doi: 10.1021/ja306621n. Epub 2012 Sep 24.

Abstract

We report a new strategy for the photomediated phase transfer of luminescent quantum dots, QDs, and potentially other inorganic nanocrystals, from hydrophobic to polar and hydrophilic media. In particular, we demonstrate that UV-irradiation (λ < 400 nm) promotes the in situ ligand exchange on hydrophobic CdSe QDs with lipoic acid (LA)-based ligands and their facile QD transfer to polar solvents and to buffer media. This convenient method obviates the need to use highly reactive agents for chemical reduction of the dithiolane groups on the ligands. It maintains the optical and spectroscopic properties of the QDs, while providing high photoluminescence yield and robust colloidal stability in various biologically relevant conditions. Furthermore, development of this technique significantly simplifies the preparation and purification of QDs with sensitive functionalities. Application of these QDs to imaging the brain of live mice provides detailed information about the brain vasculature over the period of a few hours. This straightforward approach offers exciting possibilities for expanded functional compatibilities and reaction orthogonality on the surface of inorganic nanocrystals.

摘要

我们报告了一种新的策略,用于将发光量子点(QDs)和潜在的其他无机纳米晶体从疏水性转移到极性和亲水性介质中,该策略利用光介导相转移。具体来说,我们证明了 UV 辐射(λ < 400nm)促进了具有基于硫辛酸(LA)的配体的疏水性 CdSe QDs 上的原位配体交换,以及它们易于向极性溶剂和缓冲介质中的 QD 转移。这种方便的方法避免了使用高反应性试剂对配体上的二硫醇基团进行化学还原的需要。它保持了 QDs 的光学和光谱性质,同时在各种与生物学相关的条件下提供了高的荧光产率和稳健的胶体稳定性。此外,该技术的发展显著简化了具有敏感功能的 QDs 的制备和纯化。将这些 QDs 应用于活体小鼠大脑的成像,提供了关于大脑血管在数小时内的详细信息。这种直接的方法为无机纳米晶体表面的扩展功能兼容性和反应正交性提供了令人兴奋的可能性。

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