Voltammetric study of new psychoactive substance 3-fluorophenmetrazine

IF 2.9 Q2 ELECTROCHEMISTRY
Eliška Jiroušková, Radomír Čabala, Romana Sokolová
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Abstract

Electrochemical oxidation of the new psychoactive substance 3-fluorophenmetrazine (FPM) was studied in phosphate buffers by cyclic voltammetry and differential pulse voltammetry (DPV) on a glassy carbon electrode. The redox potential of FPM in buffered solution strongly depends on pH. Cyclic voltammetry behavior shows the partial influence of adsorption on the electrode process not allowing detailed analysis of the individual steps of the reaction scheme, it means the involvement of electron transfer (E) and chemical reaction (C). Nevertheless, the irreversible shape of the cyclic voltammogram is explained by the participation of hydroxylation nucleophilic addition of water (hydroxylation) after two-electron/two-proton oxidation of molecule at the tetrahydro-1,4-oxazine ring. The suggested mechanism leading to hydroxylated derivative 2-(3-fluorophenyl)-3-methyl-5-hydroxymorfolin is supported by the calculated highest occupied molecular orbital spatial distribution and atomic charges calculations for electrochemically formed radical cation. Infrared spectroelectrochemistry performed during oxidation in acetonitrile/water also supported the formation of this product.

The analytical method of FPM determination on glassy carbon electrode was developed using DPV with an attained limit of detection = 4.7 μmol/L in phosphate buffer of pH 9. The linear range of the calibration curve is from 7.0 to 107.00 μmol/L, correlation coefficient (r) = 0.9988.

Abstract Image

新型精神活性物质3-氟苯基哌嗪的伏安法研究
采用循环伏安法和差分脉冲伏安法(DPV)在玻碳电极上研究了新型精神活性物质3-氟苯甲嗪(FPM)在磷酸盐缓冲液中的电化学氧化。FPM在缓冲溶液中的氧化还原电位强烈依赖于ph。循环伏安法行为显示了吸附对电极过程的部分影响,不允许对反应方案的各个步骤进行详细分析,这意味着电子转移(E)和化学反应(C)的参与。分子在四氢-1,4-恶嗪环上的双电子/双质子氧化后,亲核加成水(羟基化)参与了不可逆的循环伏安图形状。2-(3-氟苯基)-3-甲基-5-羟莫福林羟基化衍生物的形成机理得到了最高占据分子轨道空间分布计算和电化学形成的自由基阳离子原子电荷计算的支持。在乙腈/水氧化过程中进行的红外光谱电化学反应也支持了该产物的形成。建立了在pH为9的磷酸盐缓冲液中,用DPV法测定玻碳电极上FPM的分析方法,检出限为4.7 μmol/L。校准曲线的线性范围为7.0 ~ 107.00 μmol/L,相关系数(r) = 0.9988。
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来源期刊
CiteScore
3.80
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0.00%
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10 weeks
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