首页
最新动态 交流合作 科研项目 论文著作 精彩瞬间 招生招聘
  • Tailoring graphitized cellulose nanocrystal morphologies for robust barrier and mechanical enhancement of PPC composites for green active packaging
  • 来源:余厚咏教授个人网站 2024-12-08
  • Both nanocellulose and graphene nanosheets serve as exceptional fillers for biopolymers. However, there are limited materials that effectively combine the properties of these two fillers in Poly (propylene carbonate) (PPC) to enhance their overall properties. This study presents a meticulous approach to producing graphitized nano cellulose (GCNC) with tailored rod-like (R-GCNC) and spheres-like (S-GCNC) under low-temperature and ambient-pressure conditions. The formation and integration of the reinforcement network within the PPC matrix were compared by modulating these morphologies. The R-GC 3% , with its stronger hydrogen bonding in teractions, achieved a more optimal combination of properties than S-GC 3% . Significantly, R-GCNC and PPC formed a robust reinforcement network, resulting in remarkable reductions of approximately 153 % in water absorption and 1669 % in water vapor permeability. Significantly, the mechanical properties of PPC were improved by 95 % in tensile strength and 1038 % in Young''s modulus due to improved dispersion of R-GCNC with higher aspect ratio. In addition, R-GC 3% had the highest glass transition temperature of 35.1 maximum degradation temperature increased by 16.5 ℃. The PPC/GCNC composites exhibited outstanding UV shielding, antioxidant properties, and rapid degradation rates. This study introduces a practical method for choosing suitable GCNCs as reinforcing agents to produce innovative green materials for the active packaging.


  • [来源:中国聚合物网]
  • 了解更多请进入: 余厚咏教授个人网站
相关新闻
  • · Synergistic enhancement and spherulite growth mechanism of PLA composites by multi-dimensional mineralized cellulose nanocrystals
  • · Maximizing toughness and accelerating in-outdoor degradation of PLA films with modified cellulose nanocrystals to enhance agricultural practices
  • · Highly Sensitive, Self-Healable, and Robust Polyvinyl Alcohol/Nanocellulose Composite Electronic Skin by Single-Step Marangoni Self-Assembly for Multipoint Sensing
  • · Combinatorial spider-hunting strategy to design multilayer skin-like pressure-stretch sensors with precise dual-signal self-decoupled and smart object recognition ability

关于我们  |  联系我们  

网站:中国聚合物网

polymer.cn Copyright ©2017