Green sensors for voltammetric determination of lindane in water samples using bare and nylon 6,6 modified pencil electrodes
文献情報
Lindane, an insecticide, was determined using the differential pulse cathodic stripping voltammetry technique on bare and nylon 6,6 modified pencil electrodes. Experimental parameters, such as pH, accumulation time, accumulation potential and initial potential, were optimized. A well-defined peak of lindane was found for both electrodes which was identified at −0.338 V and −0.350 V, respectively. pHs of 8.0 and 7.0 were chosen as the optimum pHs due to a good stripping signal of the reduction peak for both bare and nylon 6,6 modified pencil electrodes. There were no significant interfering ion effects on the electroanalysis of lindane. The limits of determination for bare and nylon 6,6 modified pencil electrodes were 2.13 × 10−8 M and 3.81 × 10−8 M. The nylon 6,6 modified pencil electrode exhibited a significant increase in the stripping response toward lindane determination as compared to the bare pencil electrode. Water samples were prepared by spiking known concentrations of lindane and the recovery value achieved at both bare and nylon 6,6 modified pencil electrodes was ≥95.3% with RSDs ≤ 3.22%. Ultimately, the proposed methods were relatively selective and highly sensitive and exhibited good precision.
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Analytical Methods

Analytical Methods welcomes early applications of new analytical and bioanalytical methods and technology demonstrating the potential for societal impact. We require that methods and technology reported in the journal are sufficiently innovative, robust, accurate, and compared to other available methods for the intended application. Developments with interdisciplinary approaches are particularly welcome. Systems should be proven with suitably complex and analytically challenging samples. We encourage developments within, but not limited to, the following technologies and applications: global health, point-of-care and molecular diagnostics biosensors and bioengineering drug development and pharmaceutical analysis applied microfluidics and nanotechnology omics studies, such as proteomics, metabolomics or glycomics environmental, agricultural and food science neuroscience biochemical and clinical analysis forensic analysis industrial process and method development














