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石墨烯量子点:高效机械合成、白光和宽线性激发依赖的光致发光以及膀胱癌细胞的生长抑制。

Graphene quantum dots: efficient mechanosynthesis, white-light and broad linear excitation-dependent photoluminescence and growth inhibition of bladder cancer cells.

机构信息

School of Enviromental and Chemical Engineering, Foshan University, Foshan 528000, China.

出版信息

Dalton Trans. 2020 Feb 21;49(7):2308-2316. doi: 10.1039/c9dt04575a. Epub 2020 Feb 4.

Abstract

Heteroatom-doped graphene quantum dots (GQDs) have attracted considerable attention due to their potential applications as luminescent materials and in biology. In this work, we developed a solvent-free gram-scale mechanochemical method for the preparation of nitrogen-doped graphene quantum dots (N-GQDs) with the highest solubility (31 mg mL) in water reported to date. Commercial graphite was sheared and cut through grinding with solid melamine and then ground with solid KOH to get sub-5 nm-sized, 1-3-layered N-GQDs. Notably, these N-GQDs exhibit white-light emission and broad excitation-dependent full-color photoluminescence from 463 nm to 672 nm. When the excitation light ranged from 325 nm to 485 nm, these mechanochemically obtained N-GQDs exhibited bright white-light emission. Intriguingly, the change in the emission wavelength has two-stage linear relationships with the change in the excitation wavelength, and the inflection point is at 580 nm (excited at 550 nm). The difference between the emission and excitation wavelengths decreases from 138 to 12 nm, which also shows two-stage linear relationships with the change in the excitation wavelength. It is notable that their PL quantum yields are high, up to 26.6%. Furthermore, we studied the inhibitory effect of as-obtained N-GQDs on bladder cancer cells (UMUC-3); as a result, with the increase of the concentration of N-GQDs, the proliferation of cancer cells was obviously prohibited.

摘要

杂原子掺杂石墨烯量子点(GQDs)由于其在发光材料和生物学中的潜在应用而受到广泛关注。在这项工作中,我们开发了一种无溶剂克级机械化学方法,用于制备氮掺杂石墨烯量子点(N-GQDs),其在水中的溶解度(31mg/mL)是迄今为止报道的最高值。商业石墨通过与固体三聚氰胺研磨和切割,然后与固体 KOH 研磨,得到亚 5nm 尺寸、1-3 层的 N-GQDs。值得注意的是,这些 N-GQDs 表现出白光发射和宽激发依赖性的全彩色光致发光,从 463nm 到 672nm。当激发光范围从 325nm 到 485nm 时,这些机械化学获得的 N-GQDs 表现出明亮的白光发射。有趣的是,发射波长的变化与激发波长的变化呈两阶段线性关系,转折点在 580nm(在 550nm 激发)。发射和激发波长之间的差值从 138nm 减小到 12nm,这也与激发波长的变化呈两阶段线性关系。值得注意的是,它们的光致发光量子产率很高,高达 26.6%。此外,我们研究了所得 N-GQDs 对膀胱癌细胞(UMUC-3)的抑制作用;结果表明,随着 N-GQDs 浓度的增加,癌细胞的增殖明显受到抑制。

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