1. Enhancing reactive species generation upon photo-activation of CdTe quantum dots for the chemiluminometric determination of unreacted reagent in UV/S2O8(2-) drug degradation process.
- Author
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Santana RM, Oliveira TD, Rodrigues SS, Frigerio C, Santos JL, and Korn M
- Subjects
- 3-Mercaptopropionic Acid chemistry, Cadmium Compounds chemistry, Light, Nanoparticles chemistry, Oxidation-Reduction, Potassium Compounds chemistry, Quantum Dots chemistry, Sulfates chemistry, Tellurium chemistry, 3-Mercaptopropionic Acid radiation effects, Cadmium Compounds radiation effects, Luminol chemistry, Potassium Compounds radiation effects, Quantum Dots radiation effects, Reactive Oxygen Species chemistry, Sulfates radiation effects, Tellurium radiation effects
- Abstract
A new chemiluminescence (CL) flow method for persulfate determination was developed based on luminol oxidation by in-line generated radicals. Reactive oxygen species (ROS) generated by CdTe quantum dots (QDs) under a low energetic radiation (visible light emitted by LEDs) promoted the decomposition of persulfate ion (S2O8(2-)) into sulfate radical (SO4(∙-)), leading to subsequent radical chain reactions that yield the emission of light. Due to the inherent radical short lifetimes and the transient behavior of CL phenomena an automated multi-pumping flow system (MPFS) was proposed to improve sample manipulation and reaction zone implementation ensuring reproducible analysis time and high sampling rate. The developed approach allowed up to 60 determinations per hour and determine S2O8(2-) concentrations between 0.1 and 1 mmol with good linearity (R=0.9999). The method has shown good repeatability with relative standard deviations below 2.5% (n=3) for different persulfate concentrations (0.1 and 0.625 mmol L(-1)). Limits of detection (3σ) and quantification (10σ) were 2.7 and 9.1 µmol L(-1), respectively. The MPFS system was applied to persulfate determination in bench scale UV/S2O8(2-) drug degradation processes of model samples showing good versatility and providing real time information on the persulfate consumption in photo-chemical degradation methodologies., (Copyright © 2014 Elsevier B.V. All rights reserved.)
- Published
- 2015
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