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1)  magnetic polymer
磁性高分子
1.
Preparation of magnetic polymer nanocomposite and application in water determination;
纳米磁性高分子复合微球的制备及在水检测中的应用
2.
The properties of a new magnetic composite which consists of rapid quenching NdFeB magnetic powder and magnetic polymer (OPM) were studied and contrasted with the one of the bonded NdFeB permanent magnet by nonmagnetic polymer, such as epoxy resin.
研究了二茂金属高分子铁磁粉(OPM)与快淬钕铁硼磁粉复合制成的一种新的粘结永磁复合材料的性能,并与非磁性高分子粘结钕铁硼的性能进行了比较。
3.
This paper is about research of hydrolysis of whey protein concentrate(WPC)with magnetic polymer immobilized trypsin.
利用氨基化磁性高分子固定化胰蛋白酶对乳清浓缩蛋白进行水解优化,得出水解条件为:底物质量浓度80 g/L,E/S为1400 U/g(底物),pH值为7。
2)  magnetic polymer microspheres
磁性高分子微球
1.
Progress in the preparation and application of core-shell magnetic polymer microspheres (A review);
核壳型磁性高分子微球的制备及应用进展(综述)
2.
Using PEG as the dispersant,the core-shell composite magnetic polymer microspheres with hydroxy groups,were synthesized by dispersion copolymerization of styrene and glycol monoacrylate in the presence of magnetic oxide and characterized by X-ray diffraction,transmission electron microscope,scan electron microscope,FTIR spectroscopy etc.
用聚乙二醇作为分散剂,以苯乙烯(St)和甲基丙烯酸-2-羟基乙酯(HEMA)为共聚单体,合成了含羟基的具有核壳结构的磁性高分子微球。
3.
Recently, there have been increasing interests for the research to so-called magnetic polymer microspheres because of their various functionalities.
近年来,对于磁性高分子微球的研究作为磁性功能材料的一个重要发展方向得到了人们的广泛关注。
3)  Magnetic polymer microsphere
磁性高分子微球
1.
Using BPO as the initiator, the core-shell composite magnetic polymer microspheres with carboxyl groups, were synthesized by dispersion copolymerization of styrene and acrylic acid in the presence of magnetic oxide and characterized by X-ray diffraction, transmission electron microscope, scan electron microscope, FTIR spectroscopy etc.
在共沉淀法合成超细磁粉的基础上,以苯乙烯(St)和丙烯酸为共聚单体,以过氧化苯甲酰(BPO)为引发剂,用分散聚合法得到了含羧基的具有核壳结构的磁性高分子微球。
2.
New separation technologies such as reversed micelles and magnetic polymer microspheres for application in nattokinase were put forward in order to improve its purity and yield.
对纳豆激酶的生产和分离纯化技术进行了综述,重点讨论了柱层析、发酵与泡载分离耦合和膨胀床吸附等分离方法,提出了将反胶团和磁性高分子微球等新型分离技术应用于纳豆激酶的分离以提高其纯度和产率,指出了纳豆激酶有望开发成一种新一代理想的溶栓剂,具有广阔的应用前景。
3.
Developed in the mid-1980s, magnetic polymer microsphere cut across many areas such as materi- als,biology and immunoassay.
简要概述了国内外磁性高分子微球的研究近况、性质及其应用。
4)  magnetic microsphere
磁性高分子微球
1.
In this paper recent research on magnetic microspheres is reviewed from several aspects ,includ-ing their preparation methods,structure,properties and applications.
磁性高分子微球是近二十年来研究的一类新型功能材料。
5)  polymer magnetic material
高分子磁性材料
1.
In this present paper, the frequence permealibity ( f μ′ ) of under 1000MHz and the temperature permeabibity ( T μ″ ) relation of ferrocene type polymer magnetic materials (OPM) were very stable within (1.
与铁氧化比较 ,二茂铁高分子磁性材料 (OPM)在10 0 0MHz以下 ,其频率 磁导率 (f μ′)及温度 磁导率 (T μ′)变化不大 。
6)  nonmagnetic polymer
非磁性高分子
1.
The properties of a new magnetic composite which consists of rapid quenching NdFeB magnetic powder and magnetic polymer (OPM) were studied and contrasted with the one of the bonded NdFeB permanent magnet by nonmagnetic polymer, such as epoxy resin.
研究了二茂金属高分子铁磁粉(OPM)与快淬钕铁硼磁粉复合制成的一种新的粘结永磁复合材料的性能,并与非磁性高分子粘结钕铁硼的性能进行了比较。
补充资料:磁性高分子材料
分子式:
CAS号:

性质:磁性高分子材料包括本征磁性高分子材料和复合型高分子材料,前者主要是一些掺杂聚乙炔,经热处理的聚丙烯腈、聚氨基苯醌、某些氮氧自由基和电荷转移络合物等,表现出的磁性质来源于分子内部结构,在理论研究方面具有较重要意义。后者是以非磁性质的高分子材料为基体与磁性材料复合构成,磁性来源于材料内部的磁性体,在磁性材料制备和应用方面非常重要。

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