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异山梨醇及其在生物基聚碳酸酯应用研究进展 被引量:1
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作者 高卿伟 韩志群 +6 位作者 殷鹏刚 任春晓 李锦山 赵梓贺 李传玺 陈华祥 牛晓辉 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2023年第10期150-161,共12页
异山梨醇是一种新型生物基材料,是唯一在工业上实现了大批量生产的糖类二醇。目前,将异山梨醇作为单体用于聚碳酸酯(PC)的合成及改性已成为研究热点。文中简单介绍了生物基聚碳酸酯合成的主要单体异山梨醇的结构、性能、合成方法及应用... 异山梨醇是一种新型生物基材料,是唯一在工业上实现了大批量生产的糖类二醇。目前,将异山梨醇作为单体用于聚碳酸酯(PC)的合成及改性已成为研究热点。文中简单介绍了生物基聚碳酸酯合成的主要单体异山梨醇的结构、性能、合成方法及应用情况;综述了生物基PC的合成工艺及催化体系,阐明了非光气熔融酯交换法是工业化发展的主要方向,并对改善生物基PC性能的共聚改性方法及研究成果进行了总结,同时对生物基PC的发展前景进行了展望,最后对我国生物基PC产业化提出了几点建议。 展开更多
关键词 异山梨醇 生物基聚碳酸酯 催化剂 共聚改性
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Osteogenic and antibacterial ability of micro-nano structures coated with ZnO on Ti-6Al-4V implant fabricated by two-step laser processing 被引量:1
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作者 Yi Wan zihe zhao +5 位作者 Mingzhi Yu Zhenbing Ji Teng Wang Yukui Cai Chao Liu Zhanqiang Liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第36期240-252,共13页
The biological performance of Ti-6Al-4V implant is primarily determined by their surface properties.However,traditional surface modification methods,such as acid etching,hardly make improvement in their osseointegrati... The biological performance of Ti-6Al-4V implant is primarily determined by their surface properties.However,traditional surface modification methods,such as acid etching,hardly make improvement in their osseointegration ability and antibacterial capacity.In this study,we prepared a multi-scale composite structure coated with zinc oxide(ZnO)on Ti-6Al-4V implant by an innovative technology of two-step laser processing combined with solution-assistant.Compared with the acid etching method,the physicochemical properties of surface significantly improved.The in vitro results showed that the particular dimension of micro-nano structure and the multifaceted nature of ZnO synergistically affected MC3T3-E1 osteogenesis and bacterial activities:(1)The surface morphology showed a‘contact guidance'effect on cell arrangement,which was conducive to the adhesion of filopodia and cell spreading,and the osteogenesis level of MC3T3-E1 was enhanced due to the release of zinc ions(Zn^(2+));(2)the characterization of bacterial response revealed that periodic nanostructures and Zn^(2+)released could cause damage to the cell wall of E.coli and reduce the adhesion and aggregation of S.aureus.In conclusion,the modified surface showed a synergistic effect of physical topography and chemical composition,making this a promising method and providing new insight into bone defect repairment. 展开更多
关键词 Ti-6Al-4V implant Laser processing Micro-nano structure Zinc oxide Osseointegration ability Antibacterial capacity
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