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DNA-shaped silver(i) coordination polymer based micro-solid phase extraction for determination of Amaranth and Brilliant Blue FCF in food and water samples

机译:基于DNA形的银(I)配位聚合物的微固相萃取,用于测定美酒和水样中的苋菜和辉煌的蓝色FCF

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摘要

In this study, a green and simple mechanochemical synthesis was applied for fabricating a cationic silver(I) coordination polymer (silver(I)-CP) as a promising sorbent for extracting two food dyes including Amaranth and Brilliant Blue FCF during dispersive micro-solid phase extraction directly before UV-Vis spectrophotometric detection. Then, the spectra without overlapping were recorded between 400 and 700 nm. In addition, different operating variables which influenced the extraction efficiency of Amaranth and Brilliant Blue FCF such as pH, volume of eluent, and sorbent dosage, along with extraction time were investigated by central composite design (CCD). Based on the results, the calibration graphs were linear in the range of 15-6000 ng mL(-1) with LODs of 2.28 and 3.83 ng mL(-1) for Brilliant Blue FCF and Amaranth analytes, respectively. Further, the RSDs for five replicate measurements of 50-500 ng mL(-1) in Brilliant Blue FCF and Amaranth were 4.2 and 4.7%, respectively. The established method was employed for both preconcentrating and determining trace amounts of dyes in food and water samples with satisfactory analytical results. Finally, the recovery of analytes at 4 spiking levels of 50, 100, 200 and 500 ng mL(-1) ranged from 95.4-104.5%.
机译:在该研究中,施加一种绿色和简单的机制合成,用于制造阳离子银(I)配位聚合物(银(I)-CP),作为在分散微固体期间提取两种食品染料,包括苋菜和辉煌的蓝色FCF,包括苋菜和辉煌的蓝色FCF在UV-VIS分光光度检测之前直接相萃取。然后,在400和700nm之间记录不重叠的光谱。此外,通过中央复合设计(CCD)研究了影响苋菜和亮蓝FCF的提取效率,例如pH,洗脱液和吸附剂剂量以及提取时间的不同操作变量。基于该结果,校准图分别为15-6000ng(-1)的线性,分别为辉煌的蓝色FCF和Amaranth分析物的2.28和3.83ng ml(-1)的腰层。此外,在辉煌的蓝色FCF和AmarantH中为50-500 ng ml(-1)的五个复制测量的RSD分别为4.2和4.7%。使用令人满意的分析结果,使用已建立的预浓缩和测定食物和水样中的痕量染料。最后,在40,100,200和500ng ml(-1)的4次峰值水平的分析物的回收率范围为95.4-104.5%。

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