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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Preparation and comparison of molecularly imprinted polymer fluorimetric nanoprobe based on polymer dots and carbon quantum dots for determination of acetamiprid using response surface method
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Preparation and comparison of molecularly imprinted polymer fluorimetric nanoprobe based on polymer dots and carbon quantum dots for determination of acetamiprid using response surface method

机译:基于聚合物点和碳量子点的分子印迹聚合物荧光纳米剖酶用响应表面法测定乙酰哌啶的制备及比较

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In this study molecularly imprinted polymers (MIP) based on carbon quantum dots (CQDs) and polymer dots (PDs) are developed for selective determination of acetamiprid using fluorometry. The measurement is based on the fluorescence quenching of CQDs and PDs in the presence of acetamiprid. PDs were prepared using a one-step aqueous synthesis method from ascorbic acid and diethylenetriamine at room temperature. CQDs were prepared from the same materials using the hydrothermal method at 180 degrees C. These particles were characterized using field emission scanning electron microscopy (FE-SEM), FTIR, dynamic light scattering (DLS), X-ray diffraction (XRD), UV-Vis, and fluorescence. The quantum yield was 47% for PDs and 8% for CQDs. Then, molecularly imprinted polymers (MIP) were prepared based on PDs and CQDs using reverse microemulsion method. The fluorescence quenching of CQD@MIPs and PD@MIPs was investigated at an excitation wavelength of 350 nm and emission wavelength of 440 nm in the presence of a template. Other variables affecting the fluorescence peaking were optimized using design expert software. The results illustrate that the use of PD@MIPs had a wide dynamic range 0.08-109 nmol L-1, good accuracy and detection limit of 0.02 nmol L-1, while using CQD@MIPs led to a lower dynamic range 0.36-64 nmol L-1, and detection limit of only 0.11 nmol L-1. The responses of the optical nanoprobe for acetamiprid in water (recovery 92-102%) and apple (recovery 92-103%) were also investigated.
机译:在本研究中,基于碳量子点(CQDS)和聚合物点(PDS)的分子印迹聚合物(MIP)用于使用荧光测定选择性测定acetamiprid。测量基于acetamiprid存在下CQDS和Pds的荧光猝灭。使用来自抗坏血酸和亚乙基三胺在室温下使用一步水性合成方法制备PD。通过在180℃下使用水热法制备在相同的材料中由相同的材料制备CQD。这些颗粒使用现场发射扫描电子显微镜(Fe-SEM),FTIR,动态光散射(DLS),X射线衍射(XRD),UV -VIS和荧光。对于PDS的量子产率为47%,CQD为8%。然后,使用反向微乳液法基于PDS和CQDS制备分子印迹聚合物(MIP)。在模板存在下在350nm和440nm的发射波长的激发波长下研究CQD @ MIPS和PD @ MIPS的荧光猝灭。使用设计专家软件优化影响荧光峰值的其他变量。结果说明使用PD @ MIPS的使用宽动态范围为0.08-109 nmol L-1,良好的精度和检测限为0.02 nmol L-1,同时使用CQD @ MIPS导致0.36-64 nmol的较低动态范围L-1,检测限为0.11nmol L-1。还研究了水中光学纳米孔的反应(回收率92-102%)和苹果(回收率92-103%)。

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