Published March 5, 2001 | Version v1
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Novel Spectroelectrochemical Sensor for Ferrocyanide in Hanford Waste Simulant

Description

A new type of spectroelectrochemical sensor that embodies two modes of instrumental selectivity (electrochemical and spectroscopic) in addition to selective partitioning into an applied film barrier is described. The sensor consists of a planar optical substrate/electrode coated with a chemically-selective film. Sensing is based on the change in the attenuation of light passing through the guided wave optic which accompanies a chemical reaction of an analyte induced by eletromodulation. Threefold selectivity for a chosen analyte relative to other environmental components is obtained by the choice of coating material, the electrolysis potential, and the wavelength for optical monitoring. The sensor concept is demonstrated with an indium tin oxide coated glass guided wave device that has been over-coated with a sol-gel derived charge-selective thin film. This device is then shown to be able to sense ferrocyanide in Hanford waste tank simulant solution. The ongoing development of a small portable sensor unit including a virtual interface, control electronics and optics is also described

Availability note (English)

Available from American Chemical Society, Washington, DC (US)

Additional details

Publishing Information

Publisher
American Chemical Society
Imprint Place
Washington, DC (United States)
Imprint Pagination
vp.

Optional Information

Contract/Grant/Project number
AC06-76RL01830
Notes
Nuclear Site Remediation - First Accomplishments of the Environmental Management Science Program, ACS Symposium Series 778, 364-378
Funding organization
US Department of Energy (United States)
Secondary number(s)
PNWD-SA--6636