4.7 Article

Application of derivative and derivative ratio spectrophotometry to simultaneous trace determination of rhodamine B and rhodamine 6G after dispersive liquid-liquid microextraction

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.saa.2014.02.180

Keywords

Rhodamine B; Rhodamine 6G; Derivative spectrophotometry; Derivative ratio spectrophotometry; Dispersive liquid-liquid microextraction; Food samples

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Funding

  1. Hunan Provincial Innovation Foundation for Postgraduate, China [CX2010B378]
  2. Hunan Technology Department Foundation, China [2013FJ3028]

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Two novel methods, first derivative spectrophotometric method (D-1) and first derivative ratio spectrophotometric method ((DR)-D-1), have been developed for the simultaneous trace determination of rhodamine B (RhB) and rhodamine 6G (Rh6G) in food samples after dispersive liquid-liquid microextraction (DLLME). The combination of derivative spectrophotometric techniques and DLLME procedure endows the presented methods with enhanced sensitivity and selectivity. Under optimum conditions, the linear calibration curves ranged from 5 to 450 ng mL(-1), with the correlation coefficients (r) of 0.9997 for RhB and 0.9977 for Rh6G by D-1 method, and 0.9987 for RhB and 0.9958 for Rh6G by (DR)-D-1 method, respectively. The calculated limits of detection (LODs) based on the variability of the blank solutions (S/N = 3 criterion) for 11 measurements were in the range of 0.48-1.93 ng mL(-1). The recoveries ranged from 88.1% to 111.6% (with RSD less than 4.4%) and 91.5-110.5% (with RSD less than 4.7%) for D-1 and (DR)-D-1 method, respectively. The influence of interfering substances such as foreign ions and food colorants which might be present in the food samples on the signals of RhB and Rh6G was examined. The developed methods have been successfully applied to the determination of RhB and Rh6G in black tea, red wine and chilli powder samples with the characteristics of simplicity, cost-effectiveness, environmental friendliness, and could be valuable for routine analysis. (C) 2014 Elsevier B.V. All rights reserved.

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