Flow-injection spectrophotometric determination of dipyrone in pharmaceutical formulations using a solid-phase reactor with copper(II) phosphate

Author:

Bonifácio Viviane1,Filho Orlando2,Marcolino-Júnior Luiz1

Affiliation:

1. 1Departamento de Química, Universidade Federal do Paraná, CEP 81531-990, Curitiba - PR, Brazil

2. 2Departamento de Química, Universidade Federal de São Carlos, CEP 13565-905, São Carlos - SP, Brazil

Abstract

AbstractIn this work, a flow-injection spectrophotometric method for dipyrone determination in pharmaceutical formulations was developed. Dipyrone sample solutions were injected into a carrier stream of deionized water and the reaction was carried out in a solid-phase reactor (12 cm, 2.0 mm i.d.) packed with Cu3(PO4)2(s) entrapped in a matrix of polyester resin. The Cu(II) ions were released from the solid phase reactor by the formation of Cu(II)-(dipyrone)n complex. When the complex is released, it reacts with 0.02% m/v alizarin red S in deionized water to produce a Cu(VABO3)3 complex whose absorbance was monitored at 540 nm. The calibration graph was linear over the range 5.0×10−5–4.0×10−4 mol L−1 with a detection limit of 2.0×10−5 mol L−1 and relative standard deviation for 10 successive determinations of 1.5% (2.0×10−4 mol L−1 dipyrone solution). The calculated sample throughput was 60 h−1. The column was stable for at least 8 h of continuous use (500 injections) at 25°C. Pharmaceutical formulations were analyzed and the results from an official procedure measurement were compared with those from the proposed FIA method in order to validate the latter method.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

Reference25 articles.

1. http dx org;Suarez;Anal Lett,2011

2. http dx org;Filho;Anal Chim Acta,1999

3. http dx org;Sartori;Eng,2011

4. http dx org;Ibanez;Mass Spectrom,2012

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