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Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics

Spectroscopic Mueller matrix ellipsometry is becoming increasingly routine across physical branches of science, even outside optics. The highly sensitive tracking of the polarization-related physical properties offers a reliable and non-destructive analysis of virtually any sample at hand. If couple...

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Autores principales: Vala, Daniel, Mičica, Martin, Cvejn, Daniel, Postava, Kamil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9969180/
https://www.ncbi.nlm.nih.gov/pubmed/36860536
http://dx.doi.org/10.1039/d3ra00101f
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author Vala, Daniel
Mičica, Martin
Cvejn, Daniel
Postava, Kamil
author_facet Vala, Daniel
Mičica, Martin
Cvejn, Daniel
Postava, Kamil
author_sort Vala, Daniel
collection PubMed
description Spectroscopic Mueller matrix ellipsometry is becoming increasingly routine across physical branches of science, even outside optics. The highly sensitive tracking of the polarization-related physical properties offers a reliable and non-destructive analysis of virtually any sample at hand. If coupled with a physical model, it is impeccable in performance and irreplaceable in versatility. Nonetheless, this method is rarely adopted interdisciplinarily, and when it is, it often plays a supporting role, which does not take benefit of its full potential. To bridge this gap, we present Mueller matrix ellipsometry in the context of chiroptical spectroscopy. In this work, we utilize a commercial broadband Mueller ellipsometer to analyze the optical activity of a saccharides solution. We verify the correctness of the method in the first place by studying the well-known rotatory power of glucose, fructose, and sucrose. By employing a physically meaningful dispersion model, we obtain 2π-unwrapped absolute specific rotations. Besides that, we demonstrate the capability of tracing the glucose mutarotation kinetics from just one set of measurements. Coupling the Mueller matrix ellipsometry with the proposed dispersion model ultimately leads to the precisely determined mutarotation rate constants and spectrally and temporally resolved gyration tensor of individual glucose anomers. In this view, Mueller matrix ellipsometry may stand as an offbeat yet equal technique to those considered classical chiroptical spectroscopy techniques, which may help open new opportunities for broader polarimetric applications in biomedicine and chemistry.
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spelling pubmed-99691802023-02-28 Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics Vala, Daniel Mičica, Martin Cvejn, Daniel Postava, Kamil RSC Adv Chemistry Spectroscopic Mueller matrix ellipsometry is becoming increasingly routine across physical branches of science, even outside optics. The highly sensitive tracking of the polarization-related physical properties offers a reliable and non-destructive analysis of virtually any sample at hand. If coupled with a physical model, it is impeccable in performance and irreplaceable in versatility. Nonetheless, this method is rarely adopted interdisciplinarily, and when it is, it often plays a supporting role, which does not take benefit of its full potential. To bridge this gap, we present Mueller matrix ellipsometry in the context of chiroptical spectroscopy. In this work, we utilize a commercial broadband Mueller ellipsometer to analyze the optical activity of a saccharides solution. We verify the correctness of the method in the first place by studying the well-known rotatory power of glucose, fructose, and sucrose. By employing a physically meaningful dispersion model, we obtain 2π-unwrapped absolute specific rotations. Besides that, we demonstrate the capability of tracing the glucose mutarotation kinetics from just one set of measurements. Coupling the Mueller matrix ellipsometry with the proposed dispersion model ultimately leads to the precisely determined mutarotation rate constants and spectrally and temporally resolved gyration tensor of individual glucose anomers. In this view, Mueller matrix ellipsometry may stand as an offbeat yet equal technique to those considered classical chiroptical spectroscopy techniques, which may help open new opportunities for broader polarimetric applications in biomedicine and chemistry. The Royal Society of Chemistry 2023-02-27 /pmc/articles/PMC9969180/ /pubmed/36860536 http://dx.doi.org/10.1039/d3ra00101f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Vala, Daniel
Mičica, Martin
Cvejn, Daniel
Postava, Kamil
Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics
title Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics
title_full Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics
title_fullStr Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics
title_full_unstemmed Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics
title_short Broadband Mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics
title_sort broadband mueller ellipsometer as an all-in-one tool for spectral and temporal analysis of mutarotation kinetics
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9969180/
https://www.ncbi.nlm.nih.gov/pubmed/36860536
http://dx.doi.org/10.1039/d3ra00101f
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