Biodegradable poly(vinyl alcohol)-based nanocomposite film reinforced with organophilic layered double hydroxides with potential packaging application

被引:0
作者
Jiazhuo Xie
Kun Zhang
Zhou Wang
Qinghua Zhao
Yuechao Yang
Yanfei Zhang
Shiyun Ai
Jing Xu
机构
[1] Shandong Agricultural University,College of Chemistry and Material Science
[2] Shandong Agricultural University,National Engineering Laboratory for Efficient Utilization of Soil and Fertilizer Resources, National Engineering and Technology Research Center for Slow and Controlled Release Fertilizers, College of Resources and Environme
[3] Kingenta Ecological Engineering Group Co.,National Engineering Technology Research Center for SCRF
[4] Ltd,Department of Basic Courses
[5] Shandong Medicine Technician College,undefined
来源
Iranian Polymer Journal | 2017年 / 26卷
关键词
Packaging application; Biodegradable nanocomposite films; Poly(vinyl alcohol); Organophilic layered double hydroxides; Enhanced properties;
D O I
暂无
中图分类号
学科分类号
摘要
The continuously increasing plastic wastes and diminishing fossil resources have attracted global attention into research and development of biodegradable packaging materials. In the present study, organophilic layered double hydroxides (OLDH) intercalated with aliphatic long-chain molecules as reinforcing agents were incorporated into biodegradable poly(vinyl alcohol) (PVA) matrix by a solution casting method. FTIR, XRD and SEM were performed to analyze the structure of PVA/OLDH films. The OLDH nanosheets were well-dispersed in PVA matrix and formed strong interfacial interactions with the PVA chains, leading to remarkable improvements of optical property, mechanical performance, water vapor barrier property and thermal stability. At a loading of only 2% OLDH in PVA, we observed ~67% decrease in haze and ~66% increment in tensile strength in the composite film compared with pure PVA film. Furthermore, a 24.22% decrease in water vapor permeability (enhancement in water vapor barrier property) due to the addition of 0.5 wt% OLDH and enhanced thermal stability could be observed. These results revealed that the overall performance could be improved by introducing OLDH at very low loadings and that the PVA nanocomposite films have potential for future application in packaging films. Therefore, the use of high-performance PVA/OLDH nanocomposite films can evidently promote the application of biodegradable PVA materials in packaging industry.
引用
收藏
页码:811 / 819
页数:8
相关论文
共 159 条
[11]  
Youssef AM(2017)Self-supporting-film from starch, poly(vinyl alcohol), and glutaraldehyde: optimization of composition using response surface methodology Food Hydrocoll 63 677-684
[12]  
Elsayed SM(2016)Cellulose nanofibrils/polyvinyl acetate nanocomposite adhesives with improved mechanical properties Nanoscale Res Lett 11 377-386
[13]  
Salama HH(2015)Rheology of film-forming solutions and physical properties of tara gum film reinforced with polyvinyl alcohol (PVA) Polym Adv Technol 26 1486-1493
[14]  
Elsayed HS(2010)Uniaxial drawing of graphene-PVA nanocomposites: improvement in mechanical characteristics via strain-induced exfoliation of graphene Appl Clay Sci 48 1-4
[15]  
Dufresne A(2013)New transparent PVA-InTiO hybrid thin films: influence of InTiO on the structure, morphology, optical, and dielectric properties Appl Clay Sci 71 42-48
[16]  
Xie J(2016)Emerging trends and challenges in synthetic clay-based materials and layered double hydroxides preface RSC Adv 6 79415-79436
[17]  
Zhang K(2011)Lignosulfonate interleaved layered double hydroxide: a novel green organoclay for bio-related polymer Appl Clay Sci 53 592-597
[18]  
Wu J(2011)Utilization of LDH-based materials as potential adsorbents and photocatalysts for the decontamination of dyes wastewater: a review Chem Commun 47 2104-2106
[19]  
Ren G(2016)Highly efficient and selective infrared absorption material based on layered double hydroxides for use in agricultural plastic film Chem Sci 7 1457-1461
[20]  
Chen H(2014)Enhanced luminescence of europium-doped layered double hydroxides intercalated by sensitiser anions Eur Polym J 59 136-143