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A novel ternary system for the determination of ascorbic acid concentration based on resonance Rayleigh scattering

机译:共振瑞利散射法测定抗坏血酸浓度的新型三元系统

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The dienol of ascorbic acid was observed to have a strong reducing power in a 1.44 M HCl buffer solution, and could reduce Fe3+ to Fe2+. The resulting Fe2+ was allowed to react with K3Fe(CN)(6) to form the ion-association complex Turnbull's blue, which resulted in the enhancement of resonance Rayleigh scattering (RRS), second order scattering (SOS) and frequency doubling scattering (FDS). The maximum scattering intensities occurred at wavelengths of 374 nm, 540 nm and 395 nm, respectively. The scattering intensities of the three methods were proportional to the concentration of ascorbic acid in a certain range. RRS was found to be the most sensitive method here, and its detection limit for ascorbic acid was 5.0 ng mL(-1). The experimental conditions were optimized and the effects of coexisting substances were evaluated. The method showed excellent selectivity, because relatively high amounts of common ions, acid groups, urea, amino acid, saccharides and protein were found not to influence the measurement. Accordingly, a novel, rapid, convenient, sensitive and selective RRS method for determination of ascorbic acid concentration has been proposed, and applied to detect ascorbic acid in tablets and human serum samples with satisfactory results. The reaction mechanism and causes of the resonance light scattering intensity enhancement are also discussed.
机译:观察到抗坏血酸的二烯醇在1.44 M HCl缓冲溶液中具有很强的还原能力,并且可以将Fe3 +还原为Fe2 +。使生成的Fe2 +与K3Fe(CN)(6)反应形成离子缔合复合物Turnbull's蓝色,从而增强共振瑞利散射(RRS),二阶散射(SOS)和倍频散射(FDS) )。最大散射强度分别发生在374nm,540nm和395nm的波长处。三种方法的散射强度在一定范围内与抗坏血酸浓度成正比。 RRS被认为是最敏感的方法,其抗坏血酸的检出限为5.0 ng mL(-1)。优化了实验条件,并评估了共存物质的作用。该方法具有出色的选择性,因为发现相对大量的常见离子,酸基,尿素,氨基酸,糖类和蛋白质不会影响测量。因此,已经提出了一种新颖,快速,方便,灵敏,选择性的测定抗坏血酸浓度的RRS方法,并将其用于检测片剂和人血清样品中的抗坏血酸,结果令人满意。还讨论了共振光散射强度增强的反应机理和原因。

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