Microstructures of Starch Granules with Different Amylose Contents and Allomorphs as Revealed by Scattering Techniques

小角X射线散射 层状结构 支链淀粉 小角中子散射 无定形固体 材料科学 直链淀粉 结晶学 散射 中子散射 微观结构 淀粉 化学工程 化学 光学 有机化学 物理 工程类
作者
Yimin Mao,Jialiang Shi,Liming Cai,Wonseok Hwang,Yong‐Cheng Shi
出处
期刊:Biomacromolecules [American Chemical Society]
卷期号:24 (5): 1980-1993 被引量:19
标识
DOI:10.1021/acs.biomac.2c01240
摘要

In this study, as-is (ca. 12% moisture by mass) and hydrated (50% water by mass) granules of waxy potato (WP), waxy wheat (WW), waxy maize, normal maize, and high-amylose maize (HAM) starches were investigated by using small-angle neutron and X-ray scattering (SANS and SAXS), wide-angle X-ray scattering, and ultra-small-angle neutron scattering. The SANS and SAXS data were fitted using the two-phase stacking model of alternating crystalline and amorphous layers. The partial crystalline lamellar structures inside the growth rings of granules were analyzed based on the inter-lamellar distances, thicknesses of the crystalline lamellae and amorphous layers, thickness polydispersities, and water content in each type of layer. Despite having a longer average chain length of amylopectin, the WP and HAM starches, which had B-type allomorph, had a shorter inter-lamellar distance than the other three starches with A-type allomorph. The WP starch had the most uniform crystalline lamellar thickness. After hydration, the amorphous layers were expanded, resulting in an increase of inter-layer distance. The low-angle intensity upturn in SANS and SAXS was attributed to scattering from interfaces/surfaces of larger structures, such as growth rings and macroscopic granule surfaces. Data analysis methods based on model fitting and 1D correlation function were compared. The study emphasized─owing to inherent packing disorder inside granules─that a comprehensive analysis of different parameters was essential in correlating the microstructures with starch properties.
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