透氧性
玻璃纸
材料科学
再生纤维素
纤维素
极限抗拉强度
氧气
聚丙烯
化学工程
复合材料
高分子化学
聚合物
聚乙烯
化学
有机化学
工程类
作者
Baoqiang Jiang,Yali Tang,Keke Zhou,Lixin Lu,Xiaolin Qiu,Liao Pan
摘要
Abstract A transparent, bendable, high oxygen barrier cellulose‐based film was prepared, which has far better oxygen barrier properties than conventional polyethylene, polypropylene and cellophane materials. A series of regenerated cellulose films (RCs) were prepared from filter paper lacking oxygen barrier properties under different cellulose concentrations and gelation times. It was shown that the cellulose concentration and gel time had a greater effect on the oxygen barrier properties of RCs. When the cellulose concentration was 4 wt% and the gel time was 3 h, the RCs obtained the lowest oxygen permeability coefficient (OPC) down to 2.21 × 10 −17 cm 3 cm cm −2 s −1 Pa −1 . The films have a tensile strength of 109.5 MPa, an elongation at break of 27.3% and a light transmission rate of 89%. In further, molecular dynamics simulations showed that when the filter paper was converted to RCs, the increase in hydrogen bonding and the decrease in free volume between cellulose chains caused a decrease in the diffusion coefficient of oxygen. As a novel biobased high oxygen barrier material, the film has broad application prospect in packaging and chemical industry.
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