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Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates

[Image: see text] Polyoxometalates have attracted significant interest owing to their structural diversity, redox stability, and functionality at the nanoscale. In this work, density functional theory calculations have been employed to systematically study the accuracy of various exchange–correlatio...

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Autores principales: Thompson, Jake A., González-Cabaleiro, Rebeca, Vilà-Nadal, Laia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410613/
https://www.ncbi.nlm.nih.gov/pubmed/37489885
http://dx.doi.org/10.1021/acs.inorgchem.3c01115
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author Thompson, Jake A.
González-Cabaleiro, Rebeca
Vilà-Nadal, Laia
author_facet Thompson, Jake A.
González-Cabaleiro, Rebeca
Vilà-Nadal, Laia
author_sort Thompson, Jake A.
collection PubMed
description [Image: see text] Polyoxometalates have attracted significant interest owing to their structural diversity, redox stability, and functionality at the nanoscale. In this work, density functional theory calculations have been employed to systematically study the accuracy of various exchange–correlation functionals in reproducing experimental redox potentials, U(0)(Red) in [PW(11)M(H(2)O)O(39)](q−) M = Mn(III/II), Fe(III/II), Co(III/II), and Ru(III/II). U(0)(Red) calculations for [PW(11)M(H(2)O)O(39)](q−) were calculated using a conductor-like screening model to neutralize the charge in the cluster. We explicitly located K(+) counterions which induced positive shifting of potentials by > 500 mV. This approximation improved the reproduction of redox potentials for K(x)[XW(11)M(H(2)O)O(39)](q−x) M = Mn(III/II)/Co(III/II). However, uncertainties in U(0)(Red) for K(x)[PW(11)M(H(2)O)O(39)](q−x) M = Fe(III/II)/Ru(III/II) were observed because of the over-stabilization of the ion-pairs. Hybrid functionals exceeding 25% Hartree–Fock exchange are not recommended because of large uncertainties in ΔU(0)(Red) attributed to exaggerated proximity of the ion-pairs. Our results emphasize that understanding the nature of the electrode and electrolyte environment is essential to obtain a reasonable agreement between theoretical and experimental results.
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spelling pubmed-104106132023-08-10 Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates Thompson, Jake A. González-Cabaleiro, Rebeca Vilà-Nadal, Laia Inorg Chem [Image: see text] Polyoxometalates have attracted significant interest owing to their structural diversity, redox stability, and functionality at the nanoscale. In this work, density functional theory calculations have been employed to systematically study the accuracy of various exchange–correlation functionals in reproducing experimental redox potentials, U(0)(Red) in [PW(11)M(H(2)O)O(39)](q−) M = Mn(III/II), Fe(III/II), Co(III/II), and Ru(III/II). U(0)(Red) calculations for [PW(11)M(H(2)O)O(39)](q−) were calculated using a conductor-like screening model to neutralize the charge in the cluster. We explicitly located K(+) counterions which induced positive shifting of potentials by > 500 mV. This approximation improved the reproduction of redox potentials for K(x)[XW(11)M(H(2)O)O(39)](q−x) M = Mn(III/II)/Co(III/II). However, uncertainties in U(0)(Red) for K(x)[PW(11)M(H(2)O)O(39)](q−x) M = Fe(III/II)/Ru(III/II) were observed because of the over-stabilization of the ion-pairs. Hybrid functionals exceeding 25% Hartree–Fock exchange are not recommended because of large uncertainties in ΔU(0)(Red) attributed to exaggerated proximity of the ion-pairs. Our results emphasize that understanding the nature of the electrode and electrolyte environment is essential to obtain a reasonable agreement between theoretical and experimental results. American Chemical Society 2023-07-25 /pmc/articles/PMC10410613/ /pubmed/37489885 http://dx.doi.org/10.1021/acs.inorgchem.3c01115 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Thompson, Jake A.
González-Cabaleiro, Rebeca
Vilà-Nadal, Laia
Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates
title Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates
title_full Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates
title_fullStr Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates
title_full_unstemmed Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates
title_short Reducing Systematic Uncertainty in Computed Redox Potentials for Aqueous Transition-Metal-Substituted Polyoxotungstates
title_sort reducing systematic uncertainty in computed redox potentials for aqueous transition-metal-substituted polyoxotungstates
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10410613/
https://www.ncbi.nlm.nih.gov/pubmed/37489885
http://dx.doi.org/10.1021/acs.inorgchem.3c01115
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