Department of Chemistry, Portland State University, Portland, Oregon 97207-0751, United States.
J Phys Chem A. 2011 Apr 7;115(13):2735-44. doi: 10.1021/jp1124052. Epub 2011 Mar 14.
The kinetics and mechanism of oxidation of tetramethylthiourea (TTTU) by bromine and acidic bromate has been studied in aqueous media. The kinetics of reaction of bromate with TTTU was characterized by an induction period followed by formation of bromine. The reaction stoichiometry was determined to be 4BrO(3)(-) + 3(R)(2)C═S + 3H(2)O → 4Br(-) + 3(R)(2)C═O + 3SO(4)(2-) + 6H(+). For the reaction of TTTU with bromine, a 4:1 stoichiometric ratio of bromine to TTTU was obtained with 4Br(2) + (R)(2)C═S + 5H(2)O → 8Br(-) + SO(4)(2-) + (R)(2)C═O + 10H(+). The oxidation pathway went through the formation of tetramethythiourea sulfenic acid as evidenced by the electrospray ionization mass spectrum of the dynamic reaction solution. This S-oxide was then oxidized to produce tetramethylurea and sulfate as final products of reaction. There was no evidence for the formation of the sulfinic and sulfonic acids in the oxidation pathway. This implicates the sulfoxylate anion as a precursor to formation of sulfate. In aerobic conditions, this anion can unleash a series of genotoxic reactive oxygen species which can explain TTTU's observed toxicity. A bimolecular rate constant of 5.33 ± 0.32 M(-1) s(-1) for the direct reaction of TTTU with bromine was obtained.
四甲基硫脲(TTTU)与溴和酸性溴酸盐的氧化动力学和机理在水介质中进行了研究。溴酸盐与 TTTU 反应的动力学特征是存在诱导期,随后形成溴。反应的化学计量比确定为 4BrO(3)(-) + 3(R)(2)C═S + 3H(2)O → 4Br(-) + 3(R)(2)C═O + 3SO(4)(2-) + 6H(+)。对于 TTTU 与溴的反应,获得了溴与 TTTU 的 4:1 化学计量比,4Br(2) + (R)(2)C═S + 5H(2)O → 8Br(-) + SO(4)(2-) + (R)(2)C═O + 10H(+)。氧化途径通过形成四甲硫脲亚磺酸得到证实,这可以从动态反应溶液的电喷雾电离质谱中得到证明。然后,该 S-氧化物被氧化生成四甲基脲和硫酸盐作为反应的最终产物。在氧化途径中没有形成亚磺酸和磺酸的证据。这表明亚磺酸盐阴离子是形成硫酸盐的前体。在有氧条件下,这种阴离子可以释放一系列遗传毒性的活性氧物质,这可以解释 TTTU 观察到的毒性。直接与溴反应的 TTTU 的双分子速率常数为 5.33 ± 0.32 M(-1) s(-1)。