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Synchronous Fluorescence Spectroscopy And Its Applications In Clinical Analysis And Food Safety Evaluation
Yao-Qun Li, Xiu-Ying Li, Ali Abbas Falih Shindi, Zhexiang Zou, Qian Liu, Li-Rong Lin, N. Li
Published 2012 · Materials Science
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Synchronous fluorescence spectroscopy (SFS) plays an important role in the simultaneous analysis of multicomponent samples due to the remarkable advantages of spectral simplification, light scattering reduction, and selectivity improvement over conventional fluorescence spectroscopy. The selectivity and resolution are further enhanced by the combination of synchronous fluorescence approaches with other techniques, such as derivative technique, low-temperature technique, and chemometrics. In this chapter, the methodologies of various SFS approaches are compendiously introduced. Representative examples of biological, environmental, and clinical applications of these techniques are briefly summarized. An emphasis is placed on the development of rapid and simple synchronous fluorescence-based approaches for the determination of carcinogenic polycyclic aromatic hydrocarbons in foods and the differential analysis of porphyrins in human body samples.
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