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Immobilization of Quantum Dots on Fluorescent Graphene Oxide for Ratiometric Fluorescence Detection of Copper Ions

机译:将量子点固定在荧光石墨烯氧化物上,以进行比率荧光检测铜离子

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摘要

Graphene oxide with stable fluorescence has been synthesized and utilized to support and functionalize quantum dots for dual-emissive nanostructure construction. The two emissions from graphene oxide and quantum dots are differently and independently responsive to copper ions (Cu~(2+)). The blue fluorescence of graphene oxide is very stable against Cu~2+), whereas the red fluorescence from quantum dots can be selectively quenched, inducing the composite fluorescent color change from bright red to blue. Such a novel nanocomposite can be applied for selective and sensitive determination of Cu~(2+). For practical application, the graphene based nanohybrid has been immobilized in polymer film to fabricate fluorescence test strip for Cu~(2+). A visual detection limit of 0.1 mM for the film test strip has been estimated and shows the potential application for on-site visual determination of Cu~(2+) with no need for elaborate equipment.
机译:具有稳定荧光的石墨烯已被合成并用于支持和功能化量子点,以实现双层纳米结构的构建。 对氧化石墨烯和量子点的两种排放对铜离子(Cu〜(2+))的响应有所不同,并且独立响应。 氧化石墨烯的蓝色荧光在Cu〜2++的情况下非常稳定,而量子点的红色荧光可以选择性淬灭,从而诱导从亮红色变为蓝色的复合荧光颜色变化。 这种新型的纳米复合材料可用于选择性和敏感的Cu〜(2+)。 为了实际应用,基于石墨烯的纳米杂交已被固定在聚合物膜中,以制造Cu〜(2+)的荧光测试条。 估计了膜测试条的视觉检测极限为0.1 mm,并显示了现场视觉确定Cu〜(2+)的潜在应用,而无需精心设计的设备。

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