Materials ScienceChemistry

N. Vicentini, N. Dupuy, Mylène Leitzelman, M. Cereda, P. Sobral

2005SPECTROSCOPY LETTERS

DOI: 10.1080/00387010500316080

tlooto Summary

Researchers used FTIR spectroscopy and chemometric analysis to predict cassava starch film properties by analyzing structural parameters.

Abstract

Abstract Cassava starch has been shown to make transparent and colorless flexible films without any previous chemical treatment. The functional properties of edible films are influenced by starch properties, including chain conformation, molecular bonding, crystallinity, and water content. Fourier‐transform infrared (FTIR) spectroscopy in combination with attenuated total reflectance (ATR) has been applied for the elucidation of the structure and conformation of carbohydrates. This technique associated with chemometric data processing could indicate the relationship between the structural parameters and the functional properties of cassava starch–based edible films. Successful prediction of the functional properties values of the starch–based films was achieved by partial least squares regression data. The results showed that presence of the hydroxyl group on carbon 6 of the cyclic part of glucose is directly correlated with the functional properties of cassava starch films. This paper was by special invi...

Citation format

VICENTINI, N., et al. Prediction of cassava starch edible film properties by chemometric analysis of infrared spectra. SPECTROSCOPY LETTERS, 2005, 38: 749–767.