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一种高效的绿色方法构建基于腺嘌呤硫酸盐的多色硫氮共掺杂碳点及其生物成像应用。

An Efficient Green Approach to Constructing Adenine Sulfate-Derived Multicolor Sulfur- and Nitrogen-Codoped Carbon Dots and Their Bioimaging Applications.

机构信息

Department of Semiconductor Physics and Energy Harvest-Storage Research Center, University of Ulsan, Ulsan 44610, Republic of Korea.

Faculty of Chemical and Food Technology, Ho Chi Minh City University of Technology and Education, Ho Chi Minh City 700000, Viet Nam.

出版信息

ACS Appl Mater Interfaces. 2023 Jul 12;15(27):32783-32791. doi: 10.1021/acsami.3c06093. Epub 2023 Jun 27.

Abstract

A cost-effective and environmentally friendly approach is proposed for producing N- and S-codoped multicolor-emission carbon dots (N- and S-codoped MCDs) at a mild reaction temperature (150 °C) and relatively short time (3 h). In this process, adenine sulfate acts as a novel precursor and doping agent, effectively reacting with other reagents such as citric acid, -aminosalicylic acid, and -phenylenediamine, even during solvent-free pyrolysis. The distinctive structures of reagents lead to the increased amount of graphitic nitrogen and sulfur doping in the N- and S-codoped MCDs. Notably, the obtained N- and S-codoped MCDs exhibit considerable fluorescence intensities, and their emission color can be adjusted from blue to yellow. The observed tunable photoluminescence can be attributed to variations in the surface state and the amount of N and S contents. Furthermore, due to the favorable optical properties, good water solubility and biocompatibility, and low cytotoxicity, these N- and S-codoped MCDs, especially green carbon dots, are successfully applied as fluorescent probes for bioimaging. The affordable and environmentally friendly synthesis method employed to create N- and S-codoped MCDs, combined with their remarkable optical properties, offers a promising avenue for their use in various fields, particularly in biomedical applications.

摘要

一种经济环保的方法被提出用于在温和的反应温度(150°C)和相对较短的时间(3 h)下制备 N 和 S 共掺杂多色发射碳点(N 和 S 共掺杂 MCDs)。在这个过程中,硫酸腺嘌呤作为一种新型前体和掺杂剂,与其他试剂如柠檬酸、-氨基水杨酸和-苯二胺有效反应,甚至在无溶剂热解过程中也是如此。试剂的独特结构导致 N 和 S 共掺杂 MCDs 中石墨氮和硫掺杂量的增加。值得注意的是,所获得的 N 和 S 共掺杂 MCDs 表现出相当高的荧光强度,并且它们的发射颜色可以从蓝色调谐到黄色。观察到的可调谐光致发光可以归因于表面状态和 N 和 S 含量的变化。此外,由于良好的光学性质、良好的水溶性和生物相容性以及低细胞毒性,这些 N 和 S 共掺杂 MCDs,特别是绿色碳点,成功地用作生物成像的荧光探针。用于制备 N 和 S 共掺杂 MCDs 的经济环保的合成方法,结合其显著的光学性质,为它们在各个领域的应用提供了广阔的前景,特别是在生物医学应用中。

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