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表面配体与 Zn 络合后金纳米簇的可见光激发诱导发光用于日光感应和细胞成像。

Visible Light Excitation-Induced Luminescence from Gold Nanoclusters Following Surface Ligand Complexation with Zn for Daylight Sensing and Cellular Imaging.

出版信息

Langmuir. 2019 Jul 9;35(27):9037-9043. doi: 10.1021/acs.langmuir.9b00991. Epub 2019 Jun 27.

Abstract

Herein, we report a complexation reaction-mediated extended aggregation of gold nanoclusters exhibiting luminescence under visible light excitation. The complexation reaction between the carboxylate groups of mercaptopropionic acid and zinc ions induced the aggregation of gold nanoclusters, which featured bright green luminescence upon excitation with visible light of wavelength 450 nm and beyond. This luminescence of aggregated Au NCs, easily discernible with bare eyes (under broad daylight excitation), was used as a probe for luminescence-based detection of molecules based on the p K values of the latter. This aspect has been an unfilled dream of scientists pursuing research on the development of nanoscale sensors, as luminescence-based detection techniques offer a greater degree of accuracy and sensitivity compared to absorption-based methods, and was thus far an unexploited/untapped area by nanoscale materials. Moreover, facile imaging of mammalian cells was achieved using these aggregated clusters upon excitation with visible light. This study demonstrates the utility of luminescent nanoclusters, akin to organic dyes, as materials active under visible light excitation. Thus, the complexation reaction-based tailoring of the optical properties of nanoclusters served as an effective tool in pushing the absorption maxima of the nanoclusters from an ultraviolet to visible range, enabling the luminescence of nanoclusters under broad daylight excitation. Hence, the work embodied herein offers a unique route to widen the application potential of metal nanoclusters as sensors and bioimaging agents operating under visible light excitation.

摘要

在此,我们报告了一个复杂反应介导的金纳米簇的扩展聚集,在可见光激发下表现出发光。巯基丙酸的羧酸盐基团与锌离子之间的络合反应诱导了金纳米簇的聚集,当用波长为 450nm 及以上的可见光激发时,其呈现出明亮的绿色发光。这种聚集的 Au NCs 的发光,在自然光下(在自然光激发下)用肉眼很容易识别,被用作基于后者的 pK 值的基于发光的分子检测的探针。这一方面是追求开发纳米级传感器的科学家的一个未实现的梦想,因为基于发光的检测技术比基于吸收的方法具有更高的准确性和灵敏度,而且迄今为止,纳米级材料在这方面还没有得到充分利用/开发。此外,通过可见光激发这些聚集的簇可以实现对哺乳动物细胞的简便成像。本研究证明了类似于有机染料的发光纳米簇作为在可见光激发下具有活性的材料的实用性。因此,基于络合反应的纳米簇光学性质的剪裁是一种有效的工具,可以将纳米簇的吸收最大值从紫外光范围推向可见光范围,从而在自然光激发下实现纳米簇的发光。因此,本文所体现的工作为拓宽金属纳米簇作为传感器和生物成像剂在可见光激发下的应用潜力提供了一条独特的途径。

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