volume 25 issue 25 pages 16921-16929

Ferrocene/ferrocenium, cobaltocene/cobaltocenium and nickelocene/nickelocenium: from gas phase ionization energy to one-electron reduction potential in solvated medium

Publication typeJournal Article
Publication date2023-06-16
scimago Q2
wos Q2
SJR0.698
CiteScore5.3
Impact factor2.9
ISSN14639076, 14639084
PubMed ID:  37325896
Physical and Theoretical Chemistry
General Physics and Astronomy
Abstract
We propose a theoretical procedure for accurate determination of reduction potentials for three metallocene couples, Cp2M+/Cp2M, where M = Fe, Co and Ni. This procedure first computes the gas phase ionization energy (IE) using the explicitly correlated CCSD(T)-F12 method and includes the zero-point energy correction, core–valence electronic correlation, and relativistic and spin–orbit coupling effects. By means of Born–Haber thermochemical cycle, the one-electron reduction potential is obtained as the sum of the gas phase IE and the corresponding Gibbs free energies of solvation (ΔGsolv) for both the neutral and cationic species. Among the three solvent models (PCM, SMD and uESE) investigated here, it turns out that only the SMD model (computed at the DFT level) gives the best estimation of the value for “ΔGsolv(cation) − ΔGsolv(neutral)” and thus, combining with the accurate IE values, the theoretical protocol is capable of yielding reliable values (in V) for , and . These predictions compare favorably with the available experimental data (in V): , , and . We show that our theoretical procedure is reliable for accurate reduction potential predictions of Cp2Fe+/Cp2Fe, Cp2Co+/Cp2Co and Cp2Ni+/Cp2Ni redox couples in aqueous and non-aqueous media; the maximum absolute deviation is as small as ≈120 mV, which outperforms those of the existing theoretical methods.
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Zhao H., Pan Y., Lau K. Ferrocene/ferrocenium, cobaltocene/cobaltocenium and nickelocene/nickelocenium: from gas phase ionization energy to one-electron reduction potential in solvated medium // Physical Chemistry Chemical Physics. 2023. Vol. 25. No. 25. pp. 16921-16929.
GOST all authors (up to 50) Copy
Zhao H., Pan Y., Lau K. Ferrocene/ferrocenium, cobaltocene/cobaltocenium and nickelocene/nickelocenium: from gas phase ionization energy to one-electron reduction potential in solvated medium // Physical Chemistry Chemical Physics. 2023. Vol. 25. No. 25. pp. 16921-16929.
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TY - JOUR
DO - 10.1039/d3cp01904g
UR - https://xlink.rsc.org/?DOI=D3CP01904G
TI - Ferrocene/ferrocenium, cobaltocene/cobaltocenium and nickelocene/nickelocenium: from gas phase ionization energy to one-electron reduction potential in solvated medium
T2 - Physical Chemistry Chemical Physics
AU - Zhao, Hongyan
AU - Pan, Yi
AU - Lau, Kai-Chung
PY - 2023
DA - 2023/06/16
PB - Royal Society of Chemistry (RSC)
SP - 16921-16929
IS - 25
VL - 25
PMID - 37325896
SN - 1463-9076
SN - 1463-9084
ER -
BibTex |
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BibTex (up to 50 authors) Copy
@article{2023_Zhao,
author = {Hongyan Zhao and Yi Pan and Kai-Chung Lau},
title = {Ferrocene/ferrocenium, cobaltocene/cobaltocenium and nickelocene/nickelocenium: from gas phase ionization energy to one-electron reduction potential in solvated medium},
journal = {Physical Chemistry Chemical Physics},
year = {2023},
volume = {25},
publisher = {Royal Society of Chemistry (RSC)},
month = {jun},
url = {https://xlink.rsc.org/?DOI=D3CP01904G},
number = {25},
pages = {16921--16929},
doi = {10.1039/d3cp01904g}
}
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Zhao, Hongyan, et al. “Ferrocene/ferrocenium, cobaltocene/cobaltocenium and nickelocene/nickelocenium: from gas phase ionization energy to one-electron reduction potential in solvated medium.” Physical Chemistry Chemical Physics, vol. 25, no. 25, Jun. 2023, pp. 16921-16929. https://xlink.rsc.org/?DOI=D3CP01904G.
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