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Zhurnal Tekhnicheskoi Fiziki, 2023, Volume 93, Issue 4, Pages 463–472
DOI: https://doi.org/10.21883/JTF.2023.04.55033.279-22
(Mi jtf6969)
 

10th International Symposium on Optics and Biophotonics September 26-30, 2022, Saratov, Russia
Physical Science of Materials

Optical diffusion diagnostics of evolving polymer foams

M. V. Alonovaa, S. S. Volchkova, D. A. Zimnyakovb, A. A. Isaevaa, E. A. Isaevaa, E. V. Ushakovaa, O. V. Ushakovaa

a Yuri Gagarin State Technical University of Saratov, Saratov, Russia
b Institute of Precision Mechanics and Control of the Federal Research Center "Saratov Scientific Center" of RAS, 410028 Saratov, Russia
Abstract: Various approaches to the optical diagnostics of evolving polymer foams formed as a result of a decrease in the external pressure according to a given scenario in the “polymer-supercritical fluid” systems are considered.Formed polymer foams are considered as a material platform for the creation of scaffolds for biomedical applications. Diagnostics of the current state of the foam was carried out by statistical analysis of the spatiotemporal fluctuations of the probe laser radiation,multiple scattered in the volume of the evolving foam, or by analyzing the fluorescent response during foaming of the “polymer-fluorophore” mixture, pumped by laser radiation in the absorption band of the fluorophore. A relationship has been established between the average lifetime of dynamic speckles in scattered laser light and a generalized parameter characterizing the foam expansion dynamics. It was also found that the waveguide effect in the walls of the formed pores has a significant influence on the fluorescent response of the evolving foam, leading to an increase in the characteristic dwell time of fluorescence radiation in the walls and, accordingly, to an increase in the contribution of the induced component to the fluorescent response.
Keywords: fluorescent response, speckle correlometry, polylactide, foaming, supercritical carbon dioxide.
Funding agency Grant number
Russian Science Foundation 21-79-00051
The study was supported by the Russian Science Foundation, grant № 21-79-00051.
Received: 19.12.2022
Revised: 19.12.2022
Accepted: 19.12.2022
Bibliographic databases:
Document Type: Article
Language: Russian
Citation: M. V. Alonova, S. S. Volchkov, D. A. Zimnyakov, A. A. Isaeva, E. A. Isaeva, E. V. Ushakova, O. V. Ushakova, “Optical diffusion diagnostics of evolving polymer foams”, Zhurnal Tekhnicheskoi Fiziki, 93:4 (2023), 463–472
Citation in format AMSBIB
\Bibitem{AloVolZim23}
\by M.~V.~Alonova, S.~S.~Volchkov, D.~A.~Zimnyakov, A.~A.~Isaeva, E.~A.~Isaeva, E.~V.~Ushakova, O.~V.~Ushakova
\paper Optical diffusion diagnostics of evolving polymer foams
\jour Zhurnal Tekhnicheskoi Fiziki
\yr 2023
\vol 93
\issue 4
\pages 463--472
\mathnet{http://mi.mathnet.ru/jtf6969}
\crossref{https://doi.org/10.21883/JTF.2023.04.55033.279-22}
\elib{https://elibrary.ru/item.asp?id=53935254}
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