
doi: 10.2172/920812
The nano electrode arrays for in-situ identification and quantification of chemicals in water progress in four major directions. (1) We developed and engineering three nanoelectrode array designs which operate in a portable field mode or as distributed sensor network for water systems. (2) To replace the fragile glass electrochemical cells using in the lab, we design and engineered field-ready sampling heads that combine the nanoelectrode arrays with a high-speed potentiostat. (3) To utilize these arrays in a portable system we design and engineered a light weight high-speed potentiostat with pulse widths from 2 psec. to 100 msec. or greater. (4) Finally, we developed the parameters for an analytical method in low-conductivity solutions for Pb(II) detection, with initial studies for the analysis of As(III) and As(V) analysis in natural water sources.
Pollutants, Organic, Design, Water, Water-Analysis, Nanostructures, Arsenic, Detection, Electrochemical Cells, 37 Inorganic, Lead, Quantitative Chemical Analysis Nanotechnology, Physical And Analytical Chemistry, Nanotechnology, Glass, Sampling, 54 Environmental Sciences, Electrodes, Electrochemical Analysis, Potentiostats
Pollutants, Organic, Design, Water, Water-Analysis, Nanostructures, Arsenic, Detection, Electrochemical Cells, 37 Inorganic, Lead, Quantitative Chemical Analysis Nanotechnology, Physical And Analytical Chemistry, Nanotechnology, Glass, Sampling, 54 Environmental Sciences, Electrodes, Electrochemical Analysis, Potentiostats
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