Wang Weixia, Chen Jie, Wang Dake, Shen Yanmei, Yang Like, Zhang Tuo, Ge Jia
College of Chemistry, Green Catalysis Center, Henan Joint International Research Laboratory of Green Construction of Functional Molecules and Their Bioanalytical Applications, Zhengzhou University, Zhengzhou 450001, P. R. China.
Anal Methods. 2021 Feb 19;13(6):789-795. doi: 10.1039/d0ay02186e.
Fluorescent carbon dots derived from natural biomass have received widespread attention in recent years due to their superior optical and chemical properties. In this work, we proposed a method to synthesize fluorescent nitrogen, sulfur, and phosphorus co-doped carbon dots (NSP-CDs) using biomass waste as a precursor. The blue emitting carbon dots were prepared from the seeds of green pepper, and Fe3+ ions could quench the fluorescence of NSP-CDs. Therefore, a fluorescent "turn-off" sensor based on NSP-CDs was constructed for the detection of Fe3+ ions. Further, NSP-CDs were evaluated as a fluorescent biosensor for the detection of Fe3+ in tap water and lake water samples, showing their potential value in practical applications. The cytotoxicity test further confirmed that NSP-CDs have good biocompatibility and can be extended to cell imaging and intracellular Fe3+ detection. The proposed method is simple, economical and green, which can meet the requirements of environmental monitoring and biological imaging.
近年来,源自天然生物质的荧光碳点因其优异的光学和化学性质而受到广泛关注。在这项工作中,我们提出了一种以生物质废料为前驱体合成荧光氮、硫、磷共掺杂碳点(NSP-CDs)的方法。从青椒种子制备出了发蓝光的碳点,并且Fe3+离子能够淬灭NSP-CDs的荧光。因此,构建了一种基于NSP-CDs的荧光“关断”传感器用于检测Fe3+离子。此外,对NSP-CDs作为荧光生物传感器检测自来水和湖水样品中的Fe3+进行了评估,显示出它们在实际应用中的潜在价值。细胞毒性测试进一步证实NSP-CDs具有良好的生物相容性,并且可以扩展到细胞成像和细胞内Fe3+检测。所提出的方法简单、经济且绿色,能够满足环境监测和生物成像的要求。