Institute of Environmental Science, and School of Chemistry and Chemical Engineering , Shanxi University , Taiyuan 030006 , China.
Department of Chemical & Petroleum Engineering, Swanson School of Engineering , University of Pittsburgh , Pittsburgh , Pennsylvania 15261 , United States.
ACS Appl Mater Interfaces. 2019 May 8;11(18):16822-16829. doi: 10.1021/acsami.9b01319. Epub 2019 Apr 23.
The construction of ratiometric fluorescence assay has displayed fantastic advantages in improving semi-quantitative visualization capability by presenting successive color changes. Herein, long-wavelength emission nitrogen-doped carbon dots (N-CDs) were developed for intrinsic ratiometric detection of silver ions (Ag) and glutathione (GSH), accompanied by visualization fluorescence variation of orange and green. The label-free N-CDs were favorably obtained through one-step hydrothermal synthesis and displayed single long-wavelength emission at 618 nm under the excitation wavelength of 478 nm. Interestingly, a ratio rising peak emerges at 532 nm and the emission at 618 nm decreases with the introduction of Ag, which exhibits ratiometric fluorescence emission characteristics ( I/ I) in the range of 0-140 μM with significant fluorescence varying from orange to green. Furthermore, the fluorescence of CDs@Ag(I) can be effectively ratiometric recovered by virtue of a specific reaction of GSH with Ag, which is accompanied by the fluorescence of the solution returning from green to orange. In addition, the N-CDs hold excellent biocompatibility which can be implemented as the visualization biosensing platform for intracellular determination of Ag and GSH, demonstrating that proposed N-CDs have tremendous potential in biological systems.
比率荧光测定法的构建在提高半定量可视化能力方面显示出了巨大的优势,它通过呈现连续的颜色变化来实现。在此,我们开发了长波长发射氮掺杂碳点(N-CDs),用于银离子(Ag)和谷胱甘肽(GSH)的固有比率检测,并伴有橙色和绿色的荧光变化。通过一步水热合成法可以得到无标记的 N-CDs,在 478nm 的激发波长下,它显示出单一的长波长发射峰,位于 618nm。有趣的是,随着 Ag 的引入,会出现一个比率上升峰,而 618nm 的发射强度降低,表现出比率荧光发射特性(I/ I),在 0-140μM 范围内具有显著的荧光从橙色到绿色的变化。此外,由于 GSH 与 Ag 的特异性反应,CDs@Ag(I)的荧光可以被有效比率恢复,溶液的荧光从绿色恢复到橙色。此外,N-CDs 具有良好的生物相容性,可以作为可视化生物传感平台,用于细胞内 Ag 和 GSH 的测定,这表明所提出的 N-CDs 在生物系统中具有巨大的潜力。