简介概要

ZnS/Bacterial Cellulose/Epoxy Resin(ZnS/BC/E56) Nanocomposites with Good Transparency and Flexibility

来源期刊:JOURNAL OF MATERIALS SCIENCE TECHNOLOG2016年第2期

论文作者:Fangyi Guan Shiyan Chen Jingjing Yao Weili Zheng Huaping Wang

文章页码:153 - 157

摘    要:ZnS/bacterial cellulose/epoxy resin(ZnS/BC/E56) nanocomposites with good transparency and flexibility were prepared and characterized.When the precursor Zn2+ concentrations were not more than 1 wt%,the size of the introduced ZnS nanoparticles was smaller than 50 nm and the distribution was homogeneous within the composites.Under the condition,outstanding transmittance more than 70%in the visible light was obtained.By incorporation of ZnS nanoparticles with excellent thermo-optic stability to the composites,the thermo-optic coefficient was obviously increased from-361×10-6 to-310×10-6K-1.The good flexibility,optical and mechanical properties endow the nanocomposites potential applications in the flexible optoelectronic materials.

详情信息展示

ZnS/Bacterial Cellulose/Epoxy Resin(ZnS/BC/E56) Nanocomposites with Good Transparency and Flexibility

Fangyi Guan,Shiyan Chen,Jingjing Yao,Weili Zheng,Huaping Wang

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Key Laboratory of High-performance Fibers and Products, Ministry of Education, College of Materials Science and Engineering, Donghua University

摘 要:ZnS/bacterial cellulose/epoxy resin(ZnS/BC/E56) nanocomposites with good transparency and flexibility were prepared and characterized.When the precursor Zn2+ concentrations were not more than 1 wt%,the size of the introduced ZnS nanoparticles was smaller than 50 nm and the distribution was homogeneous within the composites.Under the condition,outstanding transmittance more than 70%in the visible light was obtained.By incorporation of ZnS nanoparticles with excellent thermo-optic stability to the composites,the thermo-optic coefficient was obviously increased from-361×10-6 to-310×10-6K-1.The good flexibility,optical and mechanical properties endow the nanocomposites potential applications in the flexible optoelectronic materials.

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