Relations between Molecular, Crystalline, and Lamellar Structures of Amylopectin
Citations Over TimeTop 10% of 2012 papers
Abstract
Chain (branch) length distributions (CLD) from size-exclusion chromatography of a series of waxy starches were parametrized using both an empirical and a biosynthesis-based method and correlated with their crystalline-amorphous lamellar properties obtained from X-ray scattering. Correlations were best seen with the biosynthesis-based parametrization. This showed for the first time that the following links between the CLD and lamellar parameters, the average interlamellar repeat distance and the distribution of these distances, were decreased by an increase in the proportion of very short branches and were increased by an increase in the proportion of intermediate and longer chains; further, the shoulder and linear sections of the CLD were found to affect the lamellar repeat distance and distribution. These effects are rationalized in terms of branch-length effects on the production of crystallites and the presence of portions of longer branches in the amorphous regions.
Related Papers
- → Crystallization induced microstructure of crystalline/crystalline poly(vinylidenefluoride)/poly(3-hydroxybutyrate) blends probed by small angle X-ray scattering(2001)66 cited
- → Synchrotron SAXS and WAXS Studies on Changes in Structural and Thermal Properties of Poly[(R)‐3‐hydroxybutyrate] Single Crystals during Heating(2005)25 cited
- → Starch and Its Component Ratio in Developing Cotton Leaves(1979)28 cited
- → Small‐angle X‐ray scattering from polyethylene: Distorted lamellar structures(2003)18 cited
- → Macrostructure of Melt-Crystallized Vinylidene Fluoride /Trifluoroethylene Copolymers (37/63, 65/35, 73/27 mol%)(1995)4 cited