## Abstract This paper describes the determination of diclofenac (DCF) in pharmaceutical formulations using flow injection method with multiple pulse amperometric detection. Unmodified boron‐doped diamond (BDD) is used as working electrode and 0.10 mol L^−1^ sulfuric acid as supporting electrolyte.
Flow Injection Amperometric Determination of Pharmaceuticals
✍ Scribed by F. González; P. Tarin; S. Maspoch; M. Blanco
- Publisher
- John Wiley and Sons
- Year
- 1988
- Tongue
- English
- Weight
- 337 KB
- Volume
- 321
- Category
- Article
- ISSN
- 0365-6233
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✦ Synopsis
A new method is proposed for the flow injection determination of nicardipine and OPAP, ~N-(2-oxo-l-pyrrolidinyl)-acetyll-N'-(3-phenylprop-2en-2-yl)piperazine, with amperometric detection at a fixed potential by oxidation on a glassy carbon electrode. The influence of the injected volume, flow rate, pH and electrolyte composition on the sensitivity is studied. In the proposed method, the effect of the analyte adsorption on the electrode surface is overcome. The response is linear over the range 0.3-SO mg/L for OPAP and 0.2-16 mg/L for nicardipine, their respective detection limits being 0.1 and 0.05 mg/L.
📜 SIMILAR VOLUMES
A flow-injection configuration for the fluorometric determination of Novalgin (dipyrone) is proposed. The procedure is based on the oxidation of Novalgin by cerium(IV). The fluorescence native of cerium(III) formed in the oxidation of Novalgin is monitored. Lineal calibration graphs were obtained be
Ethanol in wines was determined by flow injection analysis with an amperometric detector using an oxidized nickel wire. Solid-phase extraction with a strong anion exchanger was used to remove interferences such as organic acids from the matrix, and the residue of the extraction was injected directly
## Abstract A flow injection (FI) method is reported for the determination of l‐cysteine, based on its enhancement on chemiluminescence (CL) emission of luminol oxidized by sodium persulphate in alkaline solution. The calibration graph was linear over the range 1.0 × 10^–9^–5.0 × 10^–7^ mol/L (__r_