1) hollow polymer microspheres
空心聚合物微球
1.
This property makes hollow polymer microspheres useful in the medical, biochemistry and chemical engineering areas.
空心聚合物微球具有低密度、高比表面的特性,而且其空心部分可容纳大量的客体分子或大尺寸的客体,因而产生一些奇特的基于微观“包裹”效应的性质,使得空心微球材料在医药、生化和化工等许多技术领域都有重要的应用。
2.
With low density, large surface area and the hollow part which could encapsulate a lot of large molecules, hollow polymer microspheres have great useful in the medical, biochemistry and chemical engineering areas.
利用空心聚合物微球所含的酐基与多元胺的反应,对空心聚合物微球进行胺化反应,极大改善了空心聚合物微球的亲水性,并得到表面含有氨基的空心聚合物微球产物。
2) polymeric nano hollow spheres
聚合物空心纳米微球
1.
And the crosslinked polymeric nano hollow spheres with hydroxyl group on their surfaces were fabricated from a self-template method.
本文关注的重点是用简单的方法制备结构独特功能性聚合物纳米微球材料,采用无皂化微乳液聚合的方法制备了一种表面带有羧基的单分散的聚合物纳米微球和一种带有羧基的具有多孔道结构的单分散聚合物空心纳米微球,又通过自模板的方法制备了表面带有羟基的交联聚合物空心纳米微球。
3) hollow polymer microsphere
中空聚合物微球
1.
Preparation of hollow polymer microsphere and the use in coatings;
中空聚合物微球的制备及其在涂料中的应用
2.
This paper introduces the development of the micron/submicron sized hollow polymer microsphere made by acid/alkali osmotic swelling process and reviewed the present research progress,with the emphasis on discussion of the affecting factors on the hollow polymer morphology and property control.
介绍了酸碱渗透溶胀法制备微米/亚微米级中空聚合物微球,以该方法制备中空聚合物微球的具体步骤为顺序,综述了现阶段该方法制备中空聚合物微球的研究现状,分析了该方法中有关微球中空形态及性质控制的影响因素,并对中空聚合物微球未来的研究方向和应用前景进行了展望。
3.
Taking osmotic swelling method to prepare hollow polymer microspheres,a series of carboxylated cores S_1,S_2,S_3 were firstly prepared by seeded emulsion polymerization,and then latex particles of different core/shell mass ratios were formed by polymerizing the shell onto the core.
采用渗透溶胀法制备中空聚合物微球。
4) hollow microsphere polymer
中空微球聚合物
5) Polymer Hollow Microsphere
聚合物中空微球
1.
Study on Stability of Vesicle and Its Application on Preparation of Polymer Hollow Microsphere;
囊泡的稳定性与其在制备聚合物中空微球中的应用研究
6) polymer hollow sphere
聚合物空心球
1.
After dissolution with acid,the polymer hollow sphere was obtained.
以纳米碳酸钙为模板,通过无皂乳液包覆法制备出以纳米碳酸钙为核聚合物为壳的复合颗粒,再通过酸溶合成聚合物空心球,分析制备过程的机理特别是对pH值的影响。
补充资料:可降解淀粉微球和生物降解白蛋白微球阻滞法
可降解淀粉微球和生物降解白蛋白微球阻滞法
介入放射学技术。介入性局部化疗之前,把二者注入靶动脉,可暂时减少动脉血流,再行化疗药物灌注,以减少血液冲刷,保持局部化疗药物浓度的技术。与其他中期和长期栓塞微球不同,DSM和BAM仅造成数十分钟的血流量减少,待其被降解后血流可恢复至以前水平。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条