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Amino-functionalized silica-encapsulated Mn/ZnS quantum dots for the room-temperature phosphorescence determination of graphene oxide in environmental water samples

机译:氨基官能化二氧化硅包裹的Mn / ZnS量子点用于室温磷光测定环境水样中的氧化石墨烯

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We developed a simple and sensitive room-temperature phosphorescence (RTP) method for the determination of graphene oxide (GO) in environmental water samples using amino-functionalized silica-encapsulated Mn/ZnS quantum dots (Mn/ZnS@SiO2-NH2) as a phosphorescent probe. The maximum phosphorescence excitation and emission wavelengths of the synthesized Mn/ZnS@SiO2-NH2 nanoparticles were 320 nm and 595 nm. The RTP intensity of the Mn/ZnS@SiO2-NH2 nanoparticles could be quenched in the presence of GO with a detection limit as low as 1.0 mg La?’1. Good linear correlations were obtained over the concentration range from 0 to 10.0 mg La?’1 with a correlation coefficient of 0.9987, and 10.0 to 25.0 mg La?’1 with a correlation coefficient of 0.9979. The phosphorescence quenching mechanism was also discussed. This method was successfully applied to the determination of GO in environmental water samples which allows more opportunities for its application in biological and environmental systems.
机译:我们开发了一种简单而灵敏的室温磷光(RTP)方法,使用氨基官能化二氧化硅包裹的Mn / ZnS量子点(Mn / ZnS @ SiO2-NH2)作为环境水样品中氧化石墨烯(GO)的测定。磷光探针。合成的Mn / ZnS @ SiO2-NH2纳米粒子的最大磷光激发和发射波长为320 nm和595 nm。 Mn / ZnS @ SiO2-NH2纳米粒子的RTP强度可以在GO存在下淬灭,其检测限低至1.0 mg La?1。在0至10.0 mg La?’1的浓度范围内,相关系数为0.9987,在10.0至25.0 mg La?’1的浓度范围内,相关系数为0.9979,获得了良好的线性相关性。还讨论了磷光猝灭机理。该方法已成功应用于环境水样品中GO的测定,这为其在生物和环境系统中的应用提供了更多机会。

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