KINETICS OF THE OXIDATION OF MERCURY(I) BY THALLIUM (III) IN AQUEOUS SOLUTION

1957 ◽  
Vol 35 (9) ◽  
pp. 1020-1030 ◽  
Author(s):  
A. M. Armstrong ◽  
J. Halpern

The kinetics of the oxidation of mercury(I) by thallium(III) in aqueous perchloric acid solution, i.e. Hg(I)2 + Tl(III) → 2Hg(II) + Tl(I), have been examined. The rate law was found to be of the form −d[Hg(I)2]/dt = kexp[Hg(I)2][Tl(III)]/[Hg(II)] where kexp is inversely dependent on the concentrations of H+ and of ClO4−. The rate-determining step of the reaction appears to be a 'two-electron transfer' between a mercury atom, formed by the dismutation of Hg2++, and a hydrolyzed thallium ion, i.e. Hg + TlOH++ → Hg++ + Tl+ + OH−. The rate constant, k, of this reaction is given by k = 1016±2 exp[−14000 ± 3000/RT] liters mole−1 sec.−1.H+ retards the reaction by opposing the hydrolysis of Tl+++, while the effect of ClO4− appears to be due to its complexing with Hg2++, Cl− and Br− catalyze the reaction probably by complexing with Hg++, thus displacing the Hg2++dismutation equilibrium, [Formula: see text], to the right and increasing the concentration of Hg atoms. The kinetics and mechanism of the Tl(I)–Tl(III) isotopic electron exchange reaction and of other electron transfer processes in solution are considered in the light of these observations.

2004 ◽  
Vol 6 (1) ◽  
pp. 11-16 ◽  
Author(s):  
Anna Eremenko ◽  
Natalie Smirnova ◽  
Oksana Yakimenko ◽  
Galina Starukh ◽  
David R. Worrall ◽  
...  

The effect of titania-silica binaries on the processes of PET and the decay kinetics of the Anthracene (An) fluorescence and An radical cation in presence of the co-adsorbed electron donor N,Ndimethylaniline (DMA) has been studied. The fluorescence of excited An adsorbed on pure silica is quenched by the addition of DMA, while co-adsorption of DMA on Ti/Si binaries resulted in increase of fluorescence intensity of adsorbed An. We suggest that competitive adsorption between DMA and An results in DMA occupying more active “titania” sites causing the shift of An molecules to weaker adsorption sites located on the silica support. An and DMA molecules being adsorbed simultaneously on the surface, effectively produce reduced titanium ions due to an electron transfer process. These data appear to lend weight to the suggestion of a pre-exciplex An-DMA state on the surface and effective PET from the excited molecular pair to the acceptor sites on the surface. These sites may be titania aggregates, or titania ions when there is a low content of Ti in the binaries.


2011 ◽  
Vol 17 (35) ◽  
pp. 9678-9690 ◽  
Author(s):  
Nina Hüsken ◽  
Magdalena Gębala ◽  
Fabio La Mantia ◽  
Wolfgang Schuhmann ◽  
Nils Metzler-Nolte

2014 ◽  
Vol 54 (1) ◽  
pp. 280-292 ◽  
Author(s):  
Paolo Cavigli ◽  
Tatiana Da Ros ◽  
Axel Kahnt ◽  
Marta Gamberoni ◽  
Maria Teresa Indelli ◽  
...  

The kinetics of the polymerization of acrylonitrile and methacrylic acid photosensitized by cerous ions have been studied. Cerous salts have been photolyzed in different media by means of the flash technique and ceric ions were produced, accompanied by fluorescence. Quenching of the fluorescence of the excited ceric species has been investigated with and without the presence of monomer and it has been demonstrated that hydrogen ions are necessary for the polymerization reaction to proceed. The results are consistent with the following electron transfer processes: Ce 3+ . HOH + hv ^+ (Ce 4+ . HOH - )*, Ce 4+ . HOH - )* hv ^+ Ce 3+ . HOH+ hv ", Ce 4+ . HOH - )* +H + ->Ce 4+ . H 2 O+H', Ce 4+ . HOH - )* +H + + M ->Ce 4+ +H 2 M H', where M = monomer.


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