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作 者:刘琼燕[1] 何晓英[1] 高渐龙[1] 宋桃[1] 魏胤[1]
出 处:《分析试验室》2013年第1期52-55,共4页Chinese Journal of Analysis Laboratory
基 金:四川省高校科技创新团队建设项目基金(2010008)资助
摘 要:制备了乙炔黑修饰电极(AB/GCE),并用循环伏安法(CV)研究了吡虫啉(IDP)在该修饰电极上的循环伏安行为。在pH 9.0的NH3.H2O-NH4Cl缓冲液中,IDP在该电极上出现一不可逆的还原峰。在20~240mV/s扫速范围内,其还原峰电流(Ipc)与扫速平方根(v1/2)呈线性关系,表明该电极过程受扩散控制。计算了电极过程的部分动力学参数:电极有效面积为0.0635cm2,转移电子数为2,扩散系数为3.793×10-3cm2/s。运用方波伏安法测定不同浓度IDP的方波伏安曲线,还原峰电流Ipc与IDP浓度在7.0×10-7~8.0×10-5mol/L范围内呈良好线性关系(r=0.9975),检出限为2.29×10-7mol/L,加标回收率为93.5%~105.3%。A novel acetylene black glassy carbon electrode(AB/GCE) was prepared and used to determine imidacloprid(IDP) by cyclic voltammetry(CV).The results indicated that in pH 9.0 NH3 · H2O-NH4Cl buffer solution,an obvious reduction peak of imidacloprid appeared on the modified electrode.The reduction peak current was linear to v1/2in the range of 20-240 mV/s,indicating that the electrode process was controlled by diffusion.Some important kinetic parameters of the electrochemical process were determined:the effective area of AB/GCE was calculated to be 0.0635cm2,the electron transfer number(n) was 2;the diffusion coefficient(D) was 3.793×10-3 cm2/s.The peak current was linear over imidacloprid concentration in the range of 7.0×10-7-8×10-5 mol/ L.with a correlation coefficient of 0.9975and the detection limit was 2.29× 10-7mol/L.The re-coveries were in the range of 93.5%-105.3%.
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