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Chemometric Quantitative Analysis of Pyridoxine Hcl and Thiamine Hcl in a Vitamin Combination by Principal Component Analysis, Classical Least Squares, and Inverse Least Squares Techniques

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Date

2001

Journal Title

Journal ISSN

Volume Title

Publisher

Marcel dekker inc

Open Access Color

Green Open Access

No

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No
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Top 10%
Influence
Top 10%
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Average

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Abstract

Three chemometric techniques were described for the analysis of pyridoxine hydrochloride and thiamine hydrochloride within a vitamin combination in the presence of spectral interferences. For these techniques, the training set was prepared by using synthetic mixtures containing two vitamins in multiple possible combinations for the range of 8-40 mu /mL in 0.1 M HCl. The absorbance values for the training set were obtained by direct measurements at 18 wavelengths in the region 222-305 nm for the zero order spectra. The numerical values were calculated by using the 'Maple V' software. Mean recoveries and relative standard deviations for the principal component analysis, classical least squares and inverse least squares techniques were found as 100.7% and 0.95%; 100.5% and 1.38% and, 99.3% and 1.04 for pyridoxine hydrochloride; and 99.7% and 1.03%; 99.1% and 1.05% and, 99.6% and 1.58% for thiamine hydrochloride, respectively. These three chemometric techniques were successfully applied to vitamin tablets marketed in Turkey. The results were compared with each other and good coincidence was observed.

Description

Keywords

Chemometric Quantitative Analysis, Pyridoxine Hydrochloride, Thiamine Hydrochloride, Principal Component Analysis, Classical Least Square And Inverse Least Square Techniques

Fields of Science

01 natural sciences, 0104 chemical sciences

Citation

Dinç, Erdal; Baleanu, Dumitru; Onur, Feyyaz, "Chemometric quantitative analysis of pyridoxine HCl and thiamine HCl in a vitamin combination by principal component analysis, classical least squares, and inverse least squares techniques" Spectroscopy Letters, Vol.34, No.3, pp. 279-288, (2001).

WoS Q

Q3

Scopus Q

Q3
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OpenCitations Citation Count
23

Source

Spectroscopy Letters

Volume

34

Issue

3

Start Page

279

End Page

288
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CrossRef : 24

Scopus : 38

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Mendeley Readers : 5

Web of Science™ Citations

34

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2

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6.75528849

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