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A CdTe-MPA quantum dot fluorescence enhancement flow method for chlorhexidine determinationf

机译:用于洗必泰测定的CdTe-MPA量子点荧光增强流动方法

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摘要

In this work the fluorescence enhancement that water-soluble CdTe quantum dots (QDs) capped with 3 mercaptopropionic acid (MPA) exhibit in the presence of a biguanide compound, chlorhexidine, was investigated Acting as an electron-donor ligand, chlorhexidine was able to interact with the defects (mid-gap energy traps) on the QD surface improving the surface passivation and the fluorescence emission The accomplished fluorescence enhancement was used as the sensing strategy for the implementation of an analytical methodology for the determination of chlorhexidine in pharmaceutical formulations The developed approach was implemented by resorting to fully automated multipumping flow systems, which improved the versatility and analytical potential provided by QDs thereby enabling some of the shortcomings associated with the commonly used batch procedures to be overcome Different sized QDs were synthesised and evaluated A chlorhexidine analytical working range for concentrations between 0 05 x 10~(-3) and 0 5 x 10~(-3) mol L~(-1) was verified with a sampling throughput of about 63 samples per hour The obtained results were in good agreement with those obtained using the reference method (RD% < ±4 77) A mechanism for the enhancing phenomenon is proposed
机译:在这项工作中,研究了在存在双胍化合物洗必泰的情况下,被3个巯基丙酸(MPA)封端的水溶性CdTe量子点(QD)表现出的荧光增强作用充当电子给体配体,洗必泰能够相互作用具有QD表面上的缺陷(中间能隙陷阱),改善了表面钝化和荧光发射。已完成的荧光增强被用作传感策略,用于实施测定药物制剂中洗必泰的分析方法。通过采用全自动多泵流系统来实施,改进了QD的多功能性和分析潜力,从而克服了与常用批处理程序相关的一些缺点,合成并评估了不同尺寸的QD的洗必泰分析工作范围为浓度在0 05之间用每小时大约63个样品的样品通量验证了x 10〜(-3)和0 5 x 10〜(-3)mol L〜(-1)。获得的结果与使用参考方法获得的结果非常一致(RD%<±4 77)提出了一种增强现象的机理

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