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Electrochemical Oxidation of Δ9-Tetrahydrocannabinol at Nanomolar Concentrations
Christina R Forbes1, Katie A Spence2, Neil K Garg2
1ElectraTect Inc., 850 N. 5th Street, Suite 406, Phoenix, Arizona 85004, United States.
Abstract:
With increasing marijuana legalization, there is a growing need for technology that can determine if an individual is impaired due to recent marijuana usage. The electrochemical oxidation of Δ9-THC to form its corresponding quinones can be used as a framework to develop an electrochemical sensor for Δ9-THC. This study describes an electrochemical oxidation of Δ9-THC that uses a copper anode, a platinum cathode, and an atmosphere of oxygen. The oxidation is feasible at nanomolar concentrations, which approaches the reactivity that is necessary for developing a real-world marijuana breathalyzer. Moreover, we show that vaporized Δ9-THC can be captured directly in an electrolyte medium and subjected to electrochemical oxidation, thus paving the way for use in future technology development.

