4.2 Article

Regioselective oxidation of tetracycline by permanganate through alternating susceptible moiety and increasing electron donating ability

期刊

JOURNAL OF ENVIRONMENTAL SCIENCES
卷 87, 期 -, 页码 281-288

出版社

SCIENCE PRESS
DOI: 10.1016/j.jes.2019.07.004

关键词

Permanganate oxidation of tetracycline; Regioselective reactivity; Rate-limiting hydroxylation step; Altered susceptible moiety; Increased electronegativity

资金

  1. National Key R&D Program of China [2018YFC0406304]
  2. Central Public-Interest Scientific Institution Basal Research Fund [1610232019005]
  3. Agricultural Science and Technology Innovation Program [ASTIPTRIC06]

向作者/读者索取更多资源

Permanganate has attracted much attention in wide range of chemistry and particularly in degradation of environmental pollutants. However, few studies have discussed the feature of regioselective reactivity of permanganate with specific moiety of the target compound. Herein, we studied the reaction between permanganate and tetracycline that is an emerging micropollutant with different species containing several electron-rich groups. The second-order rate constants increased from 6.0 to 9.0 and could be quantitatively modeled by considering the speciation of both reactants, yielding k(TC)(0) = 11.7 (mol/L)(-1) sec(-1), k(TC)(-) = 35.7 (mol/L)(-1) sec(-1), k(TC)(2-) = 43.1 (mol/L)(-1) sec(-1) for individual reaction channels. Degradation products were then identified as the hydroxylated and demethylated compounds. The result suggested a rate-limiting step of simple hydroxylation at the phenolic and/or alkene moieties, while the demethylation should be caused by the unavoidably formed manganese oxide via single electron oxidation. This is supported by the DFT calculation, indicating the primary oxidation of phenolic group of TC0 with activation barrier of 44.5 kcal/mol and of alkene group of TC- and TC2- with activation barriers of 44.0 and 43.4 kcal/mol, respectively. This is in agreement with the experimental results, implying the alternation of regioselectivity associated with the deprotonation process. The result was further supported by performing the Fukui function and electrostatic potential analysis, reflecting the more probable site and better electron donating tendency beneficial to the permanganate oxidation. (c) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.

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