Anfossi Laura, Sales Paolo, Vanni Adriano
Department of Analytical Chemistry, University of Turin, Turin, Italy.
Pest Manag Sci. 2006 Sep;62(9):872-9. doi: 10.1002/ps.1260.
The photoinduced degradation of three anilinopyrimidine fungicides (cyprodinil, pyrimethanil and mepanipyrim) by Fe(III)-polycarboxylate complexes in aqueous solution was investigated. A photochemical redox reaction of Fe(III) complexes of oxalate and citrate occurs during irradiation (simulating sunlight) and is an important source of Fe(II) and a series of oxidants such as H2O2 and O radicals. The mechanism involves the formation of polycarboxylate radicals and/or carbon-centred radicals derived from decarboxylation, whereas the contribution of Fe(OH)2+ to O radical formation is negligible. The attack of O radicals on the fungicide molecules produces numerous photodegradation products, which were identified by means of LC-ES-MS and turned out to be mono- or dihydroxylated derivatives of the active ingredients, except for 2-amino-4,6-dimethylpyrimidine, which is only formed by pyrimethanil. The half-lives of the active ingredients, when submitted to irradiation in the presence of iron(III)-polycarboxylate complexes, were estimated to vary between 28 and 79 min (photodegradation rates in the same conditions: mepanipyrim > cyprodinil > pyrimethanil), and photodegradation is slower in citrate than in oxalate solutions. Photoproducts and their kinetics of formation are very similar for the three fungicides. The OH substitution involves the aromatic and the heterocyclic ring and the nitrogen bridge between the two rings, except for mepanipyrim when the hydroxylation also involves the propynylic side chain.
研究了三种苯胺嘧啶类杀菌剂(嘧菌环胺、嘧霉胺和二甲嘧菌胺)在水溶液中被铁(III)-多羧酸盐配合物光诱导降解的情况。在辐照(模拟阳光)过程中,草酸盐和柠檬酸盐的铁(III)配合物会发生光化学氧化还原反应,这是亚铁离子(Fe(II))以及一系列氧化剂(如过氧化氢(H₂O₂)和氧自由基(O自由基))的重要来源。其机制涉及多羧酸盐自由基和/或由脱羧反应产生的碳中心自由基的形成,而Fe(OH)₂⁺对氧自由基形成的贡献可忽略不计。氧自由基对杀菌剂分子的攻击产生了大量光降解产物,通过液相色谱 - 电喷雾质谱(LC - ES - MS)对其进行了鉴定,结果表明除了仅由嘧霉胺形成的2 - 氨基 - 4,6 - 二甲基嘧啶外,这些产物是活性成分的单羟基或二羟基衍生物。当在铁(III)-多羧酸盐配合物存在下进行辐照时,活性成分的半衰期估计在28至79分钟之间变化(相同条件下的光降解速率:二甲嘧菌胺>嘧菌环胺>嘧霉胺),并且在柠檬酸盐溶液中的光降解比在草酸盐溶液中更慢。这三种杀菌剂的光产物及其形成动力学非常相似。羟基取代涉及芳环、杂环以及两个环之间的氮桥,不过对于二甲嘧菌胺而言,羟基化还涉及丙炔侧链。