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Nitrogen and sulfur codoped graphene quantum dots as a new fluorescent probe for Au3+ ions in aqueous media

机译:氮和硫共掺杂石墨烯量子点作为水性介质中Au3 +离子的新型荧光探针

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Nitrogen and sulfur codoped graphene quantum dots (N,S-GQDs) were facilely fabricated by a one-step hydrothermal treatment of citric acid as the carbon source in the presence of cysteine as the doping agent. The resulting N,S-GQDs were characterized by TEM, AFM, Raman, FT-IR, UV-vis, XPS and fluorescence spectroscopy. The N,S-GQDs display a luminescence quantum yield of 35.4%, which was about 14 times greater than that of the undoped graphene quantum dots (GQDs). The AFM image showed a typical topographic height of 0.5 to 1.5 nm with 1-4 graphene layers. The fluorescent emission spectra of N,S-GQDs display an excitation-dependent behavior, and the emission peaks shift from 413 to 440 nm on increasing the excitation wavelength from 310 to 380 nm. The N,S-GQDs possess a storage stability of at least 2 months and are stable in the presence of high concentrations of salt. Due to the strong specific reactivity between Au3+ and amine groups on the N,S-GQDs, the addition of Au3+ ions to the N,S-GQDs suspension results in the formation of gold nanoparticles, which strongly quench the fluorescence of N,S-GQDs. While, other common cations and anions result in negligible changes in the fluorescence of N,S-GQDs. On this basis, a sensitive fluorometric method for the detection of Au3+ was developed that has a 50 nM detection limit and a linear range that extends from 0.1 mu M to 50 mu M. The method has been successfully used for the determination of Au3+ in real aqueous samples and for gold content in auranofin.
机译:在半胱氨酸作为掺杂剂的情况下,通过一步法对柠檬酸作为碳源进行水热处理,可以轻松制得氮和硫共掺杂的石墨烯量子点(N,S-GQDs)。通过TEM,AFM,拉曼,FT-IR,UV-vis,XPS和荧光光谱对所得的N,S-GQD进行表征。 N,S-GQD的发光量子产率为35.4%,约为未掺杂石墨烯量子点(GQD)的14倍。 AFM图像显示具有1-4个石墨烯层的典型形貌高度为0.5至1.5 nm。 N,S-GQDs的荧光发射光谱显示出与激发有关的行为,并且当激发波长从310 nm增加到380 nm时,发射峰从413 nm移到440 nm。 N,S-GQD具有至少2个月的储存稳定性,并且在高浓度盐存在下稳定。由于N,S-GQDs上的Au3 +和胺基之间具有很强的比反应性,因此将Au3 +离子添加到N,S-GQDs悬浮液中会形成金纳米颗粒,从而强烈淬灭N,S-GQD的荧光。 GQD。同时,其他常见的阳离子和阴离子导致N,S-GQDs的荧光变化可忽略不计。在此基础上,开发了一种灵敏的荧光法检测Au3 +,该方法的检出限为50nM,线性范围从0.1μM扩展到50μM。该方法已成功用于实际的Au3 +测定。水性样品和金诺芬中的金含量。

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