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Carbon quantum dots as a fluorophore for “inner filter effect” detection of metronidazole in pharmaceutical preparations

机译:碳量子点作为荧光团,用于“内部过滤效果”检测药物制剂中的甲硝唑

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With houttuynia cordata as carbon source, photoluminescent carbon quantum dots (CDs) were obtained via a one-step hydrothermal procedure. The absorption band of metronidazole (MNZ, maximum absorption wavelength at 319 nm) can well overlap with the excitation bands of CDs (maximum excitation wavelength at 320 nm). A fluorescent approach has been developed for detection of MNZ based on the inner filter effect (IFE), in which as-prepared CDs act as an IFE fluorophore and the MNZ as an IFE absorber. We have investigated the mechanism of quenching the fluorescence of CDs and found that the IFE leads to an exponential decay in fluorescence intensity of CDs with increasing concentration of MNZ, but showed a good linear relationship ( R ~(2) = 0.9930) between ln( F _(0) / F ) with the concentration of MNZ in the range of 3.3 × 10 ~(?6) to 2.4 × 10 ~(?4) mol L ~(?1) . Due to the absence of surface modification of the CDs or establishing any covalent linking between the absorber (MNZ) and the fluorophore (CDs), the developed method is simple, rapid, low-cost and less time-consuming. Meanwhile, it possesses a higher sensitivity, wider linear range, and satisfactory selectivity and has potential application for detection of MNZ in pharmaceutical preparations.
机译:以鱼腥草为碳源,通过一步水热法获得光致发光碳量子点(CDs)。甲硝唑的吸收带(MNZ,最大吸收波长为319 nm)可以与CD的激发带(320 nm的最大激发波长)很好地重叠。已经开发出一种基于内部滤光效应(IFE)的检测MNZ的荧光方法,其中,所制备的CD充当IFE荧光团,MNZ充当IFE吸收剂。我们研究了猝灭CD荧光的机理,发现随着MNZ浓度的增加,IFE导致CD荧光强度的指数衰减,但在ln()之间表现出良好的线性关系(R〜(2)= 0.9930)。 M NZ的浓度范围为3.3×10〜(?6)至2.4×10〜(?4)mol L〜(?1)。由于没有CD的表面修饰或在吸收剂(MNZ)和荧光团(CD)之间建立任何共价键,因此开发的方法简单,快速,低成本且耗时少。同时,它具有较高的灵敏度,较宽的线性范围和令人满意的选择性,在检测药物制剂中的MNZ方面具有潜在的应用前景。

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