Kinetics and Mechanism of Oxidation of d-Penicillamine in Acidified Bromate and Aqueous Bromine

2016 ◽  
Vol 69 (11) ◽  
pp. 1305 ◽  
Author(s):  
Kudzanai Chipiso ◽  
Reuben H. Simoyi

The oxidation of the biologically active compound d-penicillamine (Depen) by acidic bromate has been studied. The stoichiometry of the reaction is strictly 1 : 1, in which Depen is oxidized only as far as the sulfonic acid with no cleavage of the C–S bond to yield sulfate. Electrospray ionization spectroscopy shows that Depen is oxidized through addition of oxygen atoms on the sulfur centre to successively yield sulfenic and sulfinic acids before the product sulfonic acid. In conditions of excess Depen over the oxidant, sulfenic acid was not observed. Instead, nearly quantitative formation of the dimer was obtained. The dimer, which is the d-penicillamine disulfide species, was formed from a reaction of the putative highly electrophilic sulfenic acid with unreacted Depen in a condensation-type reaction and not through a radical-mediated pathway. Further oxidation of the dimer is slow because it is the most stable intermediate in the oxidation of Depen. In excess oxidant conditions, negligible dimer formation is observed. The reaction of bromine with Depen gives a stoichiometry of 3 : 1 with the same sulfonic acid product. This reaction is so fast that it is essentially diffusion controlled. Our stopped-flow instrument could not capture the oxidation by the first 2 moles of bromine, only the section of the reaction in which the sulfinic acid is oxidized to sulfonic acid.

2013 ◽  
Vol 66 (3) ◽  
pp. 362 ◽  
Author(s):  
Bice S. Martincigh ◽  
Morgen Mhike ◽  
Kayode Morakinyo ◽  
Risikat Ajibola Adigun ◽  
Reuben H. Simoyi

The oxidation of formamidine disulfide, FDS, the dimer of thiourea, by aqueous chlorine dioxide has been studied in highly acidic and mildly acidic media. FDS is one of the possible oxidation intermediates formed in the oxidation of thiourea by oxyhalogens to urea and sulfate. The reaction is exceedingly slow, giving urea and sulfate with a stoichiometric ratio of 5 : 14 FDS to chlorine dioxide after an incubation period of up to 72 h and only in highly acidic media which discourages the disproportionation of chlorine dioxide to the oxidatively inert chlorate. Mass spectrometric data suggest that the oxidative pathway proceeds predominantly through the sulfinic acid, proceeding next to the products sulfate and urea, while by-passing the sulfonic acid. Transient formation of the unstable sulfenic acid was also not observed.


1981 ◽  
Vol 12 (34) ◽  
Author(s):  
M. FURUKAWA ◽  
M. NISHIKAWA ◽  
Y. INABA ◽  
Y. NOGUCHI ◽  
T. OKAWARA ◽  
...  

1991 ◽  
Vol 26 (3) ◽  
pp. 457-468 ◽  
Author(s):  
Asima Davidović ◽  
Ibro Tabaković ◽  
Dušan Sladić ◽  
Nikola Dogović ◽  
Miroslav J. Gašic

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