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Journal ArticleDOI

Kinetics of Fluorescence Quenching by Electron and H‐Atom Transfer

Dieter Rehm, +1 more
- 01 Jan 1970 - 
- Vol. 8, Iss: 2, pp 259-271
TLDR
In this article, the rate constants of 60 typical electron donor-acceptor systems have been measured in de-oxygenated acetonitrile and are shown to be correlated with the free enthalpy change, ΔG23, involved in the actual electron transfer process.
Abstract
Fluorescence quenching rate constants, kq, ranging from 106 to 2 × 1010 M−1 sec−1, of more than 60 typical electron donor-acceptor systems have been measured in de-oxygenated acetonitrile and are shown to be correlated with the free enthalpy change, ΔG23, involved in the actual electron transfer process in the encounter complex and varying between + 5 and −60 kcal/mole. The correlation which is based on the mechanism of adiabatic outer-sphere electron transfer requires ΔG≠23, the activation free enthalpy of this process to be a monotonous function of ΔG23 and allows the calculation of rate constants of electron transfer quenching from spectroscopic and electrochemical data. A detailed study of some systems where the calculated quenching constants differ from the experimental ones by several orders of magnitude revealed that the quenching mechanism operative in these cases was hydrogen-atom rather than electron transfer. The conditions under which these different mechanisms apply and their consequences are discussed.

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Citations
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Journal ArticleDOI

Light-induced electron transfer reactions

TL;DR: In this paper, the reactions of luminescent excited states of polypyridine-ruthenium(II) complexes with electron acceptors and donors are discussed and the implications of these models for the quenching and back electron transfer reactions are discussed.
Journal ArticleDOI

Scope and limitations of the TEMPO/EPR method for singlet oxygen detection: the misleading role of electron transfer

TL;DR: The results reveal that the TEMPO/EPR method leads to significant overestimation of singlet oxygen yield when the singlet or triplet excited state of the photosensitizer is efficiently quenched by TEMP, acting as electron donor.
Journal ArticleDOI

Multicomponent Assembly of Fluorescent‐Tag Functionalized Ligands in Metal–Organic Frameworks for Sensing Explosives

TL;DR: These electron-rich MOFs were utilized for detection of explosive nitroaromatic compounds (NACs) through fluorescence quenching with high selectivity and sensitivity and showed the detection of picric acid (PA) by luminescent MOFs is not always reliable and can be misleading.
Journal ArticleDOI

Heavy-atom-free BODIPY photosensitizers with intersystem crossing mediated by intramolecular photoinduced electron transfer

TL;DR: Recently reported heavy-atom-free BODIPY donor-acceptor dyads and dimers which produce long-living triplet excited states and generate singlet oxygen are reviewed.
References
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Journal ArticleDOI

On the Theory of Oxidation‐Reduction Reactions Involving Electron Transfer. I

TL;DR: In this paper, a mechanism for electron transfer reactions is described, in which there is very little spatial overlap of the electronic orbitals of the two reacting molecules in the activated complex, and a quantitative theory of the rates of oxidation reduction reactions involving electron transfer in solution is presented.
Journal ArticleDOI

Chemical and Electrochemical Electron-Transfer Theory

TL;DR: In this article, a review of electron transfer reactions is presented, focusing on the absence of bond rupture in the reaction step, which is a unique feature of purely electron-transfer reactions.
Journal ArticleDOI

Polarographic Oxidation Potentials of Aromatic Compounds

TL;DR: In this article, the oxidation half-wave potentials of fifty-three organic compounds were determined in acetonitrile at a rotating Pt electrode, and these values were correlated with ionization potentials, with interaction energies of charge transfer complexes with trinitrofluorenone, with Huckel coefficients of the resonance integral in the expression for the highest occupied molecular orbital energy level, and with pabsorption band spectra.
Journal ArticleDOI

Electron-transfer and complex formation in the excited state

TL;DR: In this paper, a broad structureless emission band about 5000 cm1 was observed to increase with increasing electron donor concentration at the expense of the fluorescence intensity of the hydrocarbon, thereby following the same Stern-Volmer-type relation as does the well known excimer fluorescence.