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Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study

Gd@C(82)O(x)H(y) endohedral complexes for advanced biomedical applications (computer tomography, cancer treatment, etc.) were synthesized using high-frequency arc plasma discharge through a mixture of graphite and Gd(2)O(3) oxide. The Gd@C(82) endohedral complex was isolated by high-efficiency liqui...

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Autores principales: Tomilin, Felix N., Artyushenko, Polina V., Shchugoreva, Irina A., Rogova, Anastasia V., Vnukova, Natalia G., Churilov, Grigory N., Shestakov, Nikolay P., Tchaikovskaya, Olga N., Ovchinnikov, Sergei G., Avramov, Pavel V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965979/
https://www.ncbi.nlm.nih.gov/pubmed/36838557
http://dx.doi.org/10.3390/molecules28041569
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author Tomilin, Felix N.
Artyushenko, Polina V.
Shchugoreva, Irina A.
Rogova, Anastasia V.
Vnukova, Natalia G.
Churilov, Grigory N.
Shestakov, Nikolay P.
Tchaikovskaya, Olga N.
Ovchinnikov, Sergei G.
Avramov, Pavel V.
author_facet Tomilin, Felix N.
Artyushenko, Polina V.
Shchugoreva, Irina A.
Rogova, Anastasia V.
Vnukova, Natalia G.
Churilov, Grigory N.
Shestakov, Nikolay P.
Tchaikovskaya, Olga N.
Ovchinnikov, Sergei G.
Avramov, Pavel V.
author_sort Tomilin, Felix N.
collection PubMed
description Gd@C(82)O(x)H(y) endohedral complexes for advanced biomedical applications (computer tomography, cancer treatment, etc.) were synthesized using high-frequency arc plasma discharge through a mixture of graphite and Gd(2)O(3) oxide. The Gd@C(82) endohedral complex was isolated by high-efficiency liquid chromatography and consequently oxidized with the formation of a family of Gd endohedral fullerenols with gross formula Gd@C(82)O(8)(OH)(20). Fourier-transformed infrared (FTIR) spectroscopy was used to study the structure and spectroscopic properties of the complexes in combination with the DFTB3 electronic structure calculations and infrared spectra simulations. It was shown that the main IR spectral features are formed by a fullerenole C(82) cage that allows one to consider the force constants at the DFTB3 level of theory without consideration of gadolinium endohedral ions inside the carbon cage. Based on the comparison of experimental FTIR and theoretical DFTB3 IR spectra, it was found that oxidation of the C(82) cage causes the formation of Gd@C(82)O(28)H(20), with a breakdown of the integrity of the parent C(82) cage with the formation of pores between neighboring carbonyl and carboxyl groups. The Gd@C(82)O(6)(OOH)(2)(OH)(18) endohedral complex with epoxy, carbonyl and carboxyl groups was considered the most reliable fullerenole structural model.
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spelling pubmed-99659792023-02-26 Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study Tomilin, Felix N. Artyushenko, Polina V. Shchugoreva, Irina A. Rogova, Anastasia V. Vnukova, Natalia G. Churilov, Grigory N. Shestakov, Nikolay P. Tchaikovskaya, Olga N. Ovchinnikov, Sergei G. Avramov, Pavel V. Molecules Article Gd@C(82)O(x)H(y) endohedral complexes for advanced biomedical applications (computer tomography, cancer treatment, etc.) were synthesized using high-frequency arc plasma discharge through a mixture of graphite and Gd(2)O(3) oxide. The Gd@C(82) endohedral complex was isolated by high-efficiency liquid chromatography and consequently oxidized with the formation of a family of Gd endohedral fullerenols with gross formula Gd@C(82)O(8)(OH)(20). Fourier-transformed infrared (FTIR) spectroscopy was used to study the structure and spectroscopic properties of the complexes in combination with the DFTB3 electronic structure calculations and infrared spectra simulations. It was shown that the main IR spectral features are formed by a fullerenole C(82) cage that allows one to consider the force constants at the DFTB3 level of theory without consideration of gadolinium endohedral ions inside the carbon cage. Based on the comparison of experimental FTIR and theoretical DFTB3 IR spectra, it was found that oxidation of the C(82) cage causes the formation of Gd@C(82)O(28)H(20), with a breakdown of the integrity of the parent C(82) cage with the formation of pores between neighboring carbonyl and carboxyl groups. The Gd@C(82)O(6)(OOH)(2)(OH)(18) endohedral complex with epoxy, carbonyl and carboxyl groups was considered the most reliable fullerenole structural model. MDPI 2023-02-06 /pmc/articles/PMC9965979/ /pubmed/36838557 http://dx.doi.org/10.3390/molecules28041569 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tomilin, Felix N.
Artyushenko, Polina V.
Shchugoreva, Irina A.
Rogova, Anastasia V.
Vnukova, Natalia G.
Churilov, Grigory N.
Shestakov, Nikolay P.
Tchaikovskaya, Olga N.
Ovchinnikov, Sergei G.
Avramov, Pavel V.
Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study
title Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study
title_full Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study
title_fullStr Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study
title_full_unstemmed Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study
title_short Structure and Vibrational Spectroscopy of C(82) Fullerenol Valent Isomers: An Experimental and Theoretical Joint Study
title_sort structure and vibrational spectroscopy of c(82) fullerenol valent isomers: an experimental and theoretical joint study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965979/
https://www.ncbi.nlm.nih.gov/pubmed/36838557
http://dx.doi.org/10.3390/molecules28041569
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