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An efficient strategy for sensing pyrophosphate based on nitrogen-rich quantum dots combined with graphene oxide

机译:基于氮的量子点的焦磷酸磷酸磷酸盐与石墨烯氧化物进行感测的有效策略

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摘要

A facile approach was developed to prepare fluorescent nitrogen-rich quantum dots (NCQDs) using 2-azidoimidazole and ammonium hydroxide as reactants. The nitrogen and carbon elements of NCQDs form the frameworks of their nanostructures together and bear multiple active sites. By using NCQDs as fluorophores and graphene oxide (GO) as controllers, a hydrogen binding-based nanosensor was constructed for the detection of pyrophosphate (PPi). In NCQDs-GO sensing assemblies, the binding of GO to NCQDs results in the fluorescence quenching by FRET mechanism; while the addition of PPi leads to the fluorescence recovery of NCQDs because of the competitive binding between NCQDs and PPi to GO. The fluorescence intensity showed linearity with the added PPi concentration ranging from 0 to 400 mu M with the detection limit of 8.3 nM (sigma = 3). This procedure for the fabrication of amino-functionalized carbon quantum dots is simpler and more efficient compared to conventional doping and surface modification methods. The proposed NCQDs-GO sensing assemblies showed high selectivity and sensitivity to PPi over the competing anions in aqueous solution.
机译:开发了一种容易方法以使用2-氮杂胍唑和氢氧化铵作为反应物制备荧光氮的量子点(NCQDS)。 NCQDS的氮气和碳元素将其纳米结构的框架形成在一起并承受多个活性位点。通过使用NCQDS作为荧光团和石墨烯(GO)作为控制器,构建氢结合的纳米传感器用于检测焦磷酸盐(PPI)。在NCQDS-GES传感组件中,转到NCQD的结合导致荧光猝灭通过褶皱机制;由于NCQDS与PPI之间的竞争结合,因此PPI的添加导致NCQDS的荧光恢复。荧光强度显示出直线性,增加的PPI浓度范围为0-400μm,检测限为8.3nm(sigma = 3)。与常规掺杂和表面改性方法相比,制备氨基官能化的碳量子点的该方法更简单,更有效。所提出的NCQDS-GES传感组件对水溶液中竞争阴离子的PPI进行了高选择性和敏感性。

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