4.7 Article

Starch-Based Composite Films with Enhanced Hydrophobicity, Thermal Stability, and UV-Shielding Efficacy Induced by Lignin Nanoparticles

期刊

BIOMACROMOLECULES
卷 23, 期 3, 页码 829-838

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.biomac.1c01288

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资金

  1. National Natural Science Funds, China [31870563, 32001269]
  2. Innovation Pilot Project of Integration of Science, Education and Industry of Shandong Province, China [2020KJC-ZD06]
  3. Foundation of State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology, Shandong Academy of Sciences [ZZ20200103]

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A novel core-shell lignin nanoparticle was prepared from formic acid fractionation effluent. The addition of these nanoparticles significantly enhanced the hydrophobicity performance, thermal stability, and UV blocking properties of the starch composite film.
Thehighly efficient utilization of lignin is of great importance for the development of the biorefinery industry. Herein, a novel core-shell lignin nanopartide (LNP) with a diameter of around 135 nm was prepared, after the lignin was isolated from the effluent of formic acid fractionation via dialysis. In an attempt to endow composite materials with vital functionalities, the LNP was added to the starch film and the starch/polyvinyl alcohol (PVA) or starch/polyethylene oxide (PEO) composite film. The results showed that the hydrophobicity performance of the synthesized films was enhanced significantly. Specifically, the dynamic water contact angle value of the starch/PVA composite film with 1% (wt) addition of LNPs could be maintained as high as 122 degrees for 180 s; the starch/PEO composite film also achieved an excellent water contact angle above 120 degrees. The addition of LNPs promoted the formation of some rough structures on the film surface, as shown by the scanning electron microscopy images, which could repel the water molecules efficiently and are closely related to the enhanced hydrophobicity of the starch film. What is more, the asprepared LNP conferred strengthened thermal stability and ultraviolet blocking properties on the starch composite film. The structural combination of the polymer film with LNPs holds the promise for providing advanced functionalities to the composite material with wide applications.

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