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首页> 外文期刊>ACS Omega >Coumarin-Modified Graphene Quantum Dots as a Sensing Platform for Multicomponent Detection and Its Applications in Fruits and Living Cells
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Coumarin-Modified Graphene Quantum Dots as a Sensing Platform for Multicomponent Detection and Its Applications in Fruits and Living Cells

机译:香豆素修饰的石墨烯量子点作为多组分检测的传感平台及其在水果和活细胞中的应用

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In this work, coumarin derivatives (C) are used to enhance the fluorescence of graphene quantum dots (GQDs) by covalently linking the carboxyl groups on the edge of the GQD sheet. The as-synthesized coumarin-modified graphene quantum dots (C-GQDs) have a uniform particle size with an average diameter of 3.6 nm. Simultaneously, the C-GQDs have strong fluorescence emission, excellent photostability, and high fluorescence quantum yield. C-GQDs and CN~(–) can form a C-GQDs+CN~(–) system due to deprotonation and/or intermolecular interactions. The introduced hydroquinone (HQ) is oxidized to benzoquinone (BQ), and the interaction between BQ and the C-GQDs+CN~(–) system could lead to fluorescence enhancement of C-GQDs. Meanwhile, the redox reaction between BQ and ascorbic acid (AA) can be used for quantitative detection of AA with CN~(–) and HQ being used as substrates. Based on the above mechanism, C-GQDs are developed as a multicomponent detection and sensing platform, and the detection limits for CN~(–), HQ, and AA were 4.7, 2.2, and 2.2 nM, respectively. More importantly, satisfactory results were obtained when the platform was used to detect CN~(–), HQ, and AA in living cells and fresh fruits.
机译:在这项工作中,香豆素衍生物(C)用于通过共价连接GQD薄片边缘上的羧基来增强石墨烯量子点(GQD)的荧光。合成后的香豆素修饰的石墨烯量子点(C-GQDs)具有均匀的粒径,平均直径为3.6 nm。同时,C-GQD具有强荧光发射,出色的光稳定性和高荧光量子产率。由于去质子化和/或分子间相互作用,C-GQD和CN〜(–)可以形成C-GQDs + CN〜(–)系统。引入的对苯二酚(HQ)被氧化为苯醌(BQ),并且BQ与C-GQDs + CN〜(–)系统之间的相互作用可能导致C-GQDs的荧光增强。同时,BQ与抗坏血酸(AA)之间的氧化还原反应可用于以CN〜(-)和HQ为底物的AA的定量检测。基于上述机制,C-GQD被开发为多组分检测和传感平台,CN〜(-),HQ和AA的检出限分别为4.7、2.2和2.2 nM。更重要的是,当该平台用于检测活细胞和新鲜水果中的CN〜(–),HQ和AA时,获得了令人满意的结果。

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