4.7 Article

Characterization by Raman and infrared spectroscopy and fluorescence microscopy of human hair treated with cosmetic products

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.saa.2022.121577

关键词

Hair treatment; Raman spectroscopy; Infrared spectroscopy; cosmetic permeation, Raman mapping

资金

  1. FAPEMIG [CEX-APQ-02525-17, APQ-0081619]
  2. CAPES [001]
  3. CNPq [406853/2021-5]
  4. UFJF

向作者/读者索取更多资源

Vibrational spectroscopic techniques, such as Raman and infrared spectroscopy, have been increasingly utilized in the analytical studies of hair structures, showing efficiency in analyzing the permeation of cosmetic treatments into the hair fiber. These techniques demonstrated the internal characteristics of the fiber and the diffusion of different cosmetics, proving to be valuable tools for studying cosmetic permeation into the hair fiber and analyzing its external and internal structure.
Analytical studies on hair structures have evolved significantly over the years and vibrational spectroscopic techniques, such as Raman and infrared, have been increasingly used for such purposes. Nowadays, there is a need to understand more and more about the action of cosmetics on the hair fiber, so this work aims to analyze the permeation of cosmetic treatments into the hair. For the molecular structural characterization, Raman and infrared spectroscopy techniques were used, being verified the efficiency in the analysis of hair samples, demonstrating the internal characteristics of the fiber and the permeation of different cosmetics. Four cosmetics were chosen for this study and, due to the techniques used, it was possible to observe the diffusion of these products inside the bleached hair. It was observed with the Raman vibrational spectroscopy that the concentration of the products is found mainly in the cuticular region, decreasing the permeate content when approaching the central region, and the infrared spectroscopy showed results compatible with the Raman spectroscopy. Therefore, vibrational spectroscopy proved to be a valuable tool for the study of cosmetic permeation into the hair fiber and for the analysis of its external and internal structure.

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