首页> 外文期刊>Journal of Agricultural and Food Chemistry >Electrochemical and spectroscopic studies of the oxidation mechanism of the herbicide propanil.
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Electrochemical and spectroscopic studies of the oxidation mechanism of the herbicide propanil.

机译:电化学和光谱学研究除草剂丙烷的氧化机理。

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Electrochemical oxidation of propanil in deuterated solutions was studied by cyclic, differential pulse, and square wave voltammetry using a glassy carbon microelectrode. The oxidation of propanil in deuterated acid solutions occurs at the nitrogen atom of the amide at a potential of +1.15 V vs Ag/AgCl. It was also found that, under the experimental conditions used, protonation at the oxygen atom of propanil occurs, leading to the appearance of another species in solution which oxidizes at +0.60 V. The anodic peak found at +0.79 V vs Ag/AgCl in deuterated basic solutions is related to the presence of an anionic species in which a negative charge is on the nitrogen atom. The electrochemical data were confirmed by the identification of all the species formed in acidic and basic deuterated solutions by means of NMR spectroscopy. The results are supported by electrochemical and spectroscopic studies of acetanilide in deuterated solutions.
机译:通过使用玻碳微电极的循环,微分脉冲和方波伏安法研究了氘化溶液中丙醇的电化学氧化。氘代酸性溶液中丙腈的氧化发生在酰胺的氮原子上,相对于Ag / AgCl的电势为+1.15V。还发现,在所用的实验条件下,丙烷的氧原子处发生质子化,导致溶液中出现另一种在+0.60 V处氧化的物种。在+0.79 V处的阳极峰相对于Ag / AgCl氘代碱性溶液与阴离子物种的存在有关,其中阴离子在氮原子上。通过NMR光谱法鉴定在酸性和碱性氘代溶液中形成的所有物质,证实了电化学数据。氘化溶液中乙酰苯胺的电化学和光谱研究结果支持了该结果。

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