Chemometrics in electroanalytical chemistry
M Esteban, C Arino, JM Díaz-Cruz - Critical reviews in analytical …, 2006 - Taylor & Francis
M Esteban, C Arino, JM Díaz-Cruz
Critical reviews in analytical chemistry, 2006•Taylor & FrancisThe use of chemometrics in electroanalytical chemistry is not as popular as in spectroscopy,
although recently, application of these methods for mathematical resolution of overlapping
signals, calibration and model identification have been increasing. Self-modelling curve
resolution and multivariate analysis have been shown to be very powerful for in the analysis
of electroanalytical data, especially for multianalyte calibration and modelling in
multicomponent dynamic systems. In this paper, an overview on the application of …
although recently, application of these methods for mathematical resolution of overlapping
signals, calibration and model identification have been increasing. Self-modelling curve
resolution and multivariate analysis have been shown to be very powerful for in the analysis
of electroanalytical data, especially for multianalyte calibration and modelling in
multicomponent dynamic systems. In this paper, an overview on the application of …
The use of chemometrics in electroanalytical chemistry is not as popular as in spectroscopy, although recently, application of these methods for mathematical resolution of overlapping signals, calibration and model identification have been increasing. Self-modelling curve resolution and multivariate analysis have been shown to be very powerful for in the analysis of electroanalytical data, especially for multianalyte calibration and modelling in multicomponent dynamic systems. In this paper, an overview on the application of chemometrics to electroanalytical data is presented, with special attention to the contributions of the last decade.
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