AI Article Synopsis

  • A new analytical method for measuring glutamic acid is proposed, which uses an oscillating chemical reaction catalyzed by Cu(II) involving hydrogen peroxide and sodium thiocyanate in a basic environment.
  • The technique utilizes the relationship between the changes in oscillation amplitude of the chemical system and the concentration of glutamic acid, allowing for continuous, sequential measurements.
  • The method has a dynamic range of 2.5x10(-6) to 3.2x10(-4) M, an impressive regression coefficient of 0.9987, and maintains high precision with less than 0.68% relative standard deviation.

Article Abstract

An analytical method for the determination of glutamic acid by the sequential perturbation caused by different amounts of glutamic acid on the oscillating chemical system involving the Cu(II)-catalyzed oscillating reaction between hydrogen peroxide and sodium thiocyanate in an alkaline medium is proposed. The method relies on the linear relationship between the changes in the oscillation amplitude of the chemical system and the concentration of glutamic acid. The reaction is implemented in a continuous-flow stirred-tank reactor, and changes in the oscillation amplitude on each perturbation are proportional to the glutamic acid concentration. The use of the analyte pulse perturbation (APP) technique permits sequential determinations on the same oscillating system owing to the expeditiousness with which the steady state is regained after each perturbation. The dynamic range lies between 2.5x10(-6) and 3.2x10(-4) M of glutamic acid, with the regression coefficient is 0.9987. The precision is excellent (less than 0.68% as relative standard deviation (R.S.D.)). Some aspects of the potential mechanism of action of glutamic acid on the oscillating system are discussed.

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Source
http://dx.doi.org/10.1016/s0039-9140(02)00009-7DOI Listing

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