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刚-柔嵌段共聚物在有序排列的微米圆盘表面自组装构筑多级结构 被引量:1
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作者 李飞燕 唐政敏 +1 位作者 蔡春华 林嘉平 《功能高分子学报》 CAS CSCD 北大核心 2019年第3期292-299,共8页
在材料表面构筑聚合物多级结构可以显著提升其性能并赋予新的性能,但是目前已有的制备方法较为繁琐,需要开发简单易行的新方法。结合聚苯乙烯(PS)的可控蒸发组装和聚(γ-苄基-L-谷氨酸酯)-聚乙二醇(PBLG-b-PEG)刚-柔嵌段共聚物溶液自组... 在材料表面构筑聚合物多级结构可以显著提升其性能并赋予新的性能,但是目前已有的制备方法较为繁琐,需要开发简单易行的新方法。结合聚苯乙烯(PS)的可控蒸发组装和聚(γ-苄基-L-谷氨酸酯)-聚乙二醇(PBLG-b-PEG)刚-柔嵌段共聚物溶液自组装方法,在硅片表面构建了梯度排列且表面具有纳米条纹的微米圆盘多级结构。采用光学显微镜、原子力显微镜(AFM)和接触角测量仪等对微结构形貌及硅片的表面润湿性进行了表征。PS溶液经可控蒸发自组装在硅片表面形成梯度变化的微米圆点图案,经热处理及溶剂清洗后,得到微米圆盘。通过溶液自组装方法,PBLG-b-PEG在PS微米圆盘表面形成有序排列的周期性纳米条纹。材料的接触角随着图案表面微结构从半球状圆点到表面平整的圆盘再到表面带有纳米条纹的圆盘的变化持续降低。 展开更多
关键词 刚-柔嵌段共聚物 自组装 多级结构 微米圆盘 纳米条纹
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Rotating magnetic field-controlled fabrication of magnetic hydrogel with spatially disk-like microstructures 被引量:6
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作者 Fengguo Fan Jianfei Sun +5 位作者 Bo Chen Yang Li Ke Hu Peng Wang Ming Ma Ning Gu 《Science China Materials》 SCIE EI CSCD 2018年第8期1112-1122,共11页
Composite biomaterials with controllable mi- crostructures play an increasingly important role in tissue engineering and regenerative medicine. Here, we report a magnetic hydrogel composite with disk-like microstructu... Composite biomaterials with controllable mi- crostructures play an increasingly important role in tissue engineering and regenerative medicine. Here, we report a magnetic hydrogel composite with disk-like microstructure fabricated by assembly of iron oxide nanopartides during the gelation process in the presence of rotating magnetic field. It should be mentioned that the iron oxide nanoparticles here were synthesized identically following techniques of Fer- umoxytol that is the only inorganic nanodrug approved by FDA for clinical applications. The microstructure of nano- particles inside the hydrogel was ordered three-dimensionally due to the twist of the aligned chains of magnetic nano- particles which leads to the lowest state of systematic energy. The size of microstructure can be tuned from several micro- meters to tens of micrometers by changing the assembly parameters. With the increase of microstructure size, the magnetothermal anisotropy was also augmented. This result confirmed that the assembly-induced anisotropy can occur even for the several micron aggregates of nanopartides. The rotating magnetic field-assisted technique is cost-effective, simple and flexible for the fabrication of composite hydrogel with ordered microstructure. We believe it will be favorable for the quick, green and intelligent fabrication of some com- posite materials. 展开更多
关键词 magnetic nanoparticles assembly rotating magnetic field hydrogel intelligent fabrication
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