Abstract
Lauric acid was introduced into “Empty” V-type starch using a solid encapsulation method. The structural characteristics and emulsifying properties of the starch-fatty acid complex (SFAC) were explored as a function of the complexing temperature. X-ray diffraction and differential scanning calorimetry confirmed that SFAC was mainly composed of type-I amylose inclusion complexes. Contact angle measurements revealed that the hydrophobic properties of SFAC were closely related to the temperature-regulated complex index. The particle size range of SFAC gradually increased as the complexing temperature increased. The SFAC-stabilized Pickering emulsion at c of 5% and Φ of 40–60% possessed a small droplet size and long-term storage stability for up to 30 days, resulting from the formation of a gel-like network. This study provides new insight into the design of hydrophobic modified starch as a novel and multifunctional emulsifier and is of great help in the development of starch-based Pickering emulsion gels.
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CITATION STYLE
Huang, L., Li, S., Tan, C. P., Feng, Y., Zhang, B., Fu, X., & Huang, Q. (2021). Solid encapsulation of lauric acid into “empty” V-type starch: Structural characteristics and emulsifying properties. Carbohydrate Polymers, 267. https://doi.org/10.1016/j.carbpol.2021.118181
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