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Structure, chain dynamics and mechanical properties of poly(vinyl alcohol)/phytic acid composites

Authors :
Zhiguang Xu
Pingan Song
Hao Wang
Xiaodong Xu
Lujuan Li
Yang Yang
Qianqian Cao
Bingtao Wang
Source :
Composites Communications. 28:100970
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

The global micro- and nano-plastic issue has greatly triggered the development of advanced biodegradable polymeric materials. The creation of biodegradable polyvinyl alcohol (PVA)/phytic acid (PhyAc) composite represents a sustainable solution. However, it remains unclear how PhyAc molecules affect intermolecular hydrogen-bonding (H-bonding), structure, chain dynamics and mechanical properties of PVA so far. Herein, we explore structure, chain dynamics and mechanical properties of PVA/PhyAc composite by combining molecular dynamics simulation and experimental. The number of PVA-PhyAc H-bonds per PhyAc molecule and that of total H-bonds show different PhyAc content dependence. The PVA composite with 1.9 wt% of PhyAc shows a lower free volume and a smaller diffusion coefficient. Meanwhile, the glass transition temperature ( Tg) of PVA reaches the maximum value at ca. 1.25 wt% of PhyAc. Interestingly, 10 wt% PhyAc endows PVA with the highest tensile strength in addition to a good antibacterial capability. This work reveals how small molecules affect structure and mechanical properties of polymers and contributes to expanding practical applications of PVA/PhyAc in industry.

Details

ISSN :
24522139
Volume :
28
Database :
OpenAIRE
Journal :
Composites Communications
Accession number :
edsair.doi...........f916aecf4e2870a41d07c74829c1411f
Full Text :
https://doi.org/10.1016/j.coco.2021.100970