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一种用于制备石墨烯量子点的新型硫醇-烯点击反应及其在荧光成像中的应用。

A novel thiol-ene click reaction for preparation of graphene quantum dots and their potential for fluorescence imaging.

机构信息

Department of Chemistry, Nanchang University, 999 Xuefu Avenue, Nanchang 330031, China; School of Materials Science and Engineering, Nanchang University, Nanchang, Jiangxi 330031, China.

Department of Chemistry, Nanchang University, 999 Xuefu Avenue, Nanchang 330031, China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2018 Oct 1;91:631-637. doi: 10.1016/j.msec.2018.05.025. Epub 2018 May 8.

Abstract

Graphene quantum dots (GQDs), as a kind of carbon dots with the structure of graphene, possess fascinating properties of both carbon dots and graphene have attracted increasing attention for various applications especially in the biomedical fields. It is therefore, many methods for preparation of GQDs have been developed over the last decade. However, most of the previous reports are required tedious experimental procedure and hazardous agents. In this study, we developed an unparalleled preparation method for preparation of GQDs from graphene oxide through a one-step thiol-ene click reaction. More importantly, many carboxyl groups have been introduced on the surface of GQDs during this procedure. The characterization results demonstrated that these GQDs display small size, uniform morphology, high water dispersibility and strong green fluorescence. Biological assays suggested that these GQDs are of low cytotoxicity and efficient cell uptake performance. More importantly, many other GQDs could also been fabricated through the thiol-ene click reaction owing to the universality of thiol-ene click reaction. Therefore, this novel strategy based on thiol-ene click reaction should be of great importance for advancing the preparation and biomedical applications of GQDs.

摘要

石墨烯量子点(GQDs)作为一种具有石墨烯结构的碳点,同时具备碳点和石墨烯的迷人性质,因此在各个领域,特别是在生物医学领域,引起了越来越多的关注。因此,在过去的十年中,已经开发出许多制备 GQDs 的方法。然而,大多数之前的报告都需要繁琐的实验程序和危险试剂。在本研究中,我们通过一步巯基-烯点击反应,开发了一种从氧化石墨烯制备 GQDs 的无与伦比的方法。更重要的是,在这个过程中,GQDs 的表面引入了许多羧基。表征结果表明,这些 GQDs 具有小尺寸、均匀的形态、高水分散性和强绿色荧光。生物分析表明,这些 GQDs 的细胞毒性低,摄取效率高。更重要的是,由于巯基-烯点击反应的通用性,许多其他 GQDs 也可以通过巯基-烯点击反应制备。因此,这种基于巯基-烯点击反应的新策略对于推进 GQDs 的制备和生物医学应用具有重要意义。

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