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Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions

[Image: see text] Photochemical redox reactions of Cu(II) complexes of eight amino acid ligands (L) with nonpolar side chains have been systematically investigated in deaerated aqueous solutions. Under irradiation at 313 nm, the intramolecular carboxylate-to-Cu(II) charge transfer within Cu(II)–amin...

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Autores principales: Lin, Chen-Jui, Wang, Po-Yen, Lin, Yi-Liang, Chang, Sheng-Te, Hsu, Chao-Sheng, Wu, Shu-Pao, Wu, Chien-Hou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8552463/
https://www.ncbi.nlm.nih.gov/pubmed/34723017
http://dx.doi.org/10.1021/acsomega.1c04277
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author Lin, Chen-Jui
Wang, Po-Yen
Lin, Yi-Liang
Chang, Sheng-Te
Hsu, Chao-Sheng
Wu, Shu-Pao
Wu, Chien-Hou
author_facet Lin, Chen-Jui
Wang, Po-Yen
Lin, Yi-Liang
Chang, Sheng-Te
Hsu, Chao-Sheng
Wu, Shu-Pao
Wu, Chien-Hou
author_sort Lin, Chen-Jui
collection PubMed
description [Image: see text] Photochemical redox reactions of Cu(II) complexes of eight amino acid ligands (L) with nonpolar side chains have been systematically investigated in deaerated aqueous solutions. Under irradiation at 313 nm, the intramolecular carboxylate-to-Cu(II) charge transfer within Cu(II)–amino acid complexes leads to Cu(I) formation and the concomitant decomposition of amino acids. All amino acid systems studied here can produce ammonia and aldehydes except proline. For the 1:1 Cu(II) complex species (CuL), the Cu(I) quantum yields at 313 nm (Φ(Cu(I),CuL)) vary by fivefold and in the sequence (0.10 M ionic strength at 25 °C) alanine (0.094) > valine (0.059), leucine (0.059), isoleucine (0.056), phenylalanine (0.057) > glycine (0.052) > methionine (0.032) > proline (0.019). This trend can be rationalized by considering the stability of the carbon-centered radicals and the efficient depopulation of the photoexcited state, both of which are dependent on the side-chain structure. For the 1:2 Cu(II) complex species (CuL(2)), the Cu(I) quantum yields exhibit a similar trend and are always less than those for CuL. The photoformation rates of ammonia, Cu(I), and aldehydes are in the ratio of 1:2.0 ± 0.2:0.7 ± 0.2, which supports the proposed mechanism. This study suggests that the direct phototransformation of Cu(II)–amino acid complexes may contribute to the bioavailable nitrogen for aquatic microorganisms and cause biological damage on cell surfaces in sunlit waters.
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spelling pubmed-85524632021-10-29 Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions Lin, Chen-Jui Wang, Po-Yen Lin, Yi-Liang Chang, Sheng-Te Hsu, Chao-Sheng Wu, Shu-Pao Wu, Chien-Hou ACS Omega [Image: see text] Photochemical redox reactions of Cu(II) complexes of eight amino acid ligands (L) with nonpolar side chains have been systematically investigated in deaerated aqueous solutions. Under irradiation at 313 nm, the intramolecular carboxylate-to-Cu(II) charge transfer within Cu(II)–amino acid complexes leads to Cu(I) formation and the concomitant decomposition of amino acids. All amino acid systems studied here can produce ammonia and aldehydes except proline. For the 1:1 Cu(II) complex species (CuL), the Cu(I) quantum yields at 313 nm (Φ(Cu(I),CuL)) vary by fivefold and in the sequence (0.10 M ionic strength at 25 °C) alanine (0.094) > valine (0.059), leucine (0.059), isoleucine (0.056), phenylalanine (0.057) > glycine (0.052) > methionine (0.032) > proline (0.019). This trend can be rationalized by considering the stability of the carbon-centered radicals and the efficient depopulation of the photoexcited state, both of which are dependent on the side-chain structure. For the 1:2 Cu(II) complex species (CuL(2)), the Cu(I) quantum yields exhibit a similar trend and are always less than those for CuL. The photoformation rates of ammonia, Cu(I), and aldehydes are in the ratio of 1:2.0 ± 0.2:0.7 ± 0.2, which supports the proposed mechanism. This study suggests that the direct phototransformation of Cu(II)–amino acid complexes may contribute to the bioavailable nitrogen for aquatic microorganisms and cause biological damage on cell surfaces in sunlit waters. American Chemical Society 2021-10-13 /pmc/articles/PMC8552463/ /pubmed/34723017 http://dx.doi.org/10.1021/acsomega.1c04277 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Lin, Chen-Jui
Wang, Po-Yen
Lin, Yi-Liang
Chang, Sheng-Te
Hsu, Chao-Sheng
Wu, Shu-Pao
Wu, Chien-Hou
Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions
title Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions
title_full Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions
title_fullStr Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions
title_full_unstemmed Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions
title_short Nonpolar Side Chains Affect the Photochemical Redox Reactions of Copper(II)–Amino Acid Complexes in Aqueous Solutions
title_sort nonpolar side chains affect the photochemical redox reactions of copper(ii)–amino acid complexes in aqueous solutions
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8552463/
https://www.ncbi.nlm.nih.gov/pubmed/34723017
http://dx.doi.org/10.1021/acsomega.1c04277
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