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聚乙烯醇/纤维素包装材料的研究进展 被引量:7
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作者 李章康 白绘宇 《塑料包装》 CAS 2018年第4期16-19,共4页
开发使用绿色的纤维素基和一些可降解的合成高分子材料,可以缓解"白色污染"与"能源危机",这符合我国提出的节能减排、低碳经济的可持续发展战略,具有良好的发展前景。本文对纤维素增强聚乙烯醇并用于包装材料进行... 开发使用绿色的纤维素基和一些可降解的合成高分子材料,可以缓解"白色污染"与"能源危机",这符合我国提出的节能减排、低碳经济的可持续发展战略,具有良好的发展前景。本文对纤维素增强聚乙烯醇并用于包装材料进行了相关介绍,为读者认知聚乙烯醇/纤维素杂化体系提供指导与帮助。 展开更多
关键词 聚乙烯醇 纤维素 包装材料
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Super-anti-freezing,tough and adhesive titanium carbide and L-ornithine-enhanced hydrogels
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作者 zhangkang li Jamie LeBlanc +7 位作者 Hitendra Kumar Hongguang Zhang Weijun Yang Xiao He Qingye Lu Jeffrey Van Humbeck Keekyoung Kim Jinguang Hu 《Journal of Bioresources and Bioproducts》 EI CSCD 2023年第2期136-145,共10页
Hydrogels are highly porous three-dimensional crosslinked polymer networks consisting of hy-drophilic polymers,employed most practically in medicine and industry,often as biosensors.Simple hydrogels suffer limitations... Hydrogels are highly porous three-dimensional crosslinked polymer networks consisting of hy-drophilic polymers,employed most practically in medicine and industry,often as biosensors.Simple hydrogels suffer limitations in their mechanical properties,such as tensile and com-pression,and freeze at sub-zero temperatures,which compromise their ability as useful biosen-sors.In this study,the incorporation of L-ornithine-based zwitterionic monomer(OZM),titanium carbide(MXene),and glycerol within polyacrylamide hydrogels was used to prepare a novel polyacrylamide/polyL-ornithine-based zwitterion/MXene(PAM/Porn/MXene)hydrogel to im-prove the mechanical,adhesion,and anti-freezing properties of pure polyacrylamide hydrogels.This study also analyzed the mechanical strength(tensile and compression),adhesion,and anti-freezing properties of a novel PAM/Porn/MXene hydrogel at 1%,4%,and 10%MXene concen-trations to establish to what extent the conductive MXene material enhanced these properties and concluded that the tensile and compressive properties improved linearly with the increase in the concentrations of MXene,adhesion decreased with the increased MXene concentrations,and syn-ergistic interaction between MXene and OZM significantly improved the anti-freezing properties up to-80°C. 展开更多
关键词 Super-anti-freezing TOUGH ADHESIVE L-ORNITHINE MXene
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