Abstract
Hydroxypropyl starch-based composite system has high potential for many applications such as food packaging and biomedical fields. Here, how the incorporation of curdlan, a thermo-irreversible heating-set gel, tailors the processability, structure, and film performance of hydroxypropyl starch, a cooling-set gel, has been systematically investigated, aiming to achieve enhanced material properties favorable for edible packaging applications. Curdlan incorporation increased the shear-thinning behavior and viscosity of hydroxypropyl starch solution, which was also strongly affected by temperature. The miscibility and comparability between the two polymers with distinct gelation behaviors is a practical and interesting scientific topic. Scanning electron microscopy, dynamic mechanical analysis, and thermogravimetric analysis all indicated good compatibility between hydroxypropyl starch and curdlan. There was no observable phase boundary between the two materials, and all composite films showed only a single relaxation peak and only one polymer thermal decomposition peak. This resulted in improved structural density and overall performance. Compared with pure HPS film, the 7:3 HPS/CD film showed increases in tensile strength by 66.12 % and thermal decomposition temperature by 3 °C, and a reduction in water solubility by 11.72 %. This knowledge gained here may facilitate the development of edible films based on hydroxypropyl starch with satisfying film performance and processability.
| Original language | English |
|---|---|
| Article number | 133260 |
| Journal | International Journal of Biological Macromolecules |
| Volume | 274 |
| Early online date | 18 Jun 2024 |
| DOIs | |
| Publication status | Published - 31 Aug 2024 |
Data Availability Statement
Data will be made available on request.Funding
This work was financially supported by the National Natural Science Foundation of China (grant 32302145 and 32372262), the Natural Science Foundation of Shandong Province (grant ZR2021QC192), the National College Student Innovation Training Program (grant 202210435039), and the Doctoral Foundation of Qingdao Agricultural University (grant 6631120081).
| Funders | Funder number |
|---|---|
| Doctoral Foundation of Qingdao Agricultural University | 6631120081 |
| National Natural Science Foundation of China | 32372262, 32302145 |
| National Natural Science Foundation of China | |
| Natural Science Foundation of Shandong Province | ZR2021QC192 |
| Natural Science Foundation of Shandong Province | |
| National College Student Innovation Training Program | 202210435039 |
Keywords
- Hydroxypropyl starch
- Curdlan
- Rheological properties
- Edible film
- Compatibility
- Food packaging
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