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1)  Graft-Filling Polymerization
接枝填充聚合
2)  polymerization-filling
聚合填充
1.
The steady and dynamic rheology behaviors of UHMWPE/Kaolin composites prepared by a polymerization-filling method were investigated with capillary and parallel plate rheometer.
 聚合填充法制备的UHMWPE/Kaolin复合材料具有特殊的流变行为。
3)  polymerization filling
聚合填充
1.
UHMWPE/kaolin and HDPE/kaolin prepared by polymerization filling can be smoothly extruded through capillary, and with increasing addition of kaolin the apparent viscosity of the composite is decreased and the processability is improved.
用聚合填充法制备的 UHMWPE/ kaolin和 HDPE/ kaolin体系可以顺利地由毛细管挤出 ,且填充量增大 ,体系表观粘度下降 ,加工流动性变好。
4)  plasma-graft pore-filling polymerization
等离子体填孔接枝聚合
1.
Oil soluble Fe3O4 nanoparticles were synthesized,and magnetic thermo-responsive microcapsules were prepared by using the interfacial polymerization method,and then plasma-graft pore-filling polymerization was performed to graft PNIPAM into the pores of microcapsule membranes.
合成了亲油Fe3O4纳米颗粒,然后采用界面聚合法制备了磁性聚酰胺多孔微囊膜,最后用等离子体填孔接枝聚合法将聚N-异丙基丙烯酰胺(PNIPAM)接枝到微囊的多孔膜上,制得了磁性温度感应微囊膜。
5)  graft polymerization
接枝聚合
1.
Radical graft polymerization of methyl methacrylate onto nanosized Fe particle;
纳米铁粒子表面接枝聚合甲基丙烯酸甲酯
2.
Improvement of adhesion of polymers by plasma-induced graft polymerization;
等离子体接枝聚合对高分子材料粘接性能的改善
3.
On the initiating systems for in situ graft polymerization of ε-caprolactone-grafted on the PVA film;
ε-己内酯在PVA膜上原位开环接枝聚合引发体系的研究
6)  Grafting polymerization
接枝聚合
1.
Firstly,a kind of ATRP initiator,2-bromoisobutyryl bromide(BSB),was chemically immibilized on the surface of silica particles,then the grafting polymerization of GMA on the surface of BSBSiO2 particles was carried out by using cyclohexanone as solvent,CuBr as catalyst and 2,2′-bipyridine as ligand and in the presence of sacrificing initiator,ethyl 2-bromopropionate(BRA).
将原子转移自由基聚合(ATRP)引发剂2-溴基异丁酰溴(BSB)化学键合在纳米硅胶微粒表面,以CuBr为催化剂,2,2′-联吡啶(byp)为配体,并加入少量自由(牺牲性)引发剂2-溴丙酸乙酯(BRA),在BSB-SiO2粒子表面进行了甲基丙烯酸缩水甘油酯(GMA)的接枝聚合反应。
2.
Controlled grafting polymerization of styrene by atom transfer radical polymerization(ATRP) from cross-linked poly(methyl methacrylate)(PMMA) microspheres has been carried out.
在溴化亚铜(CuBr)/2,2′-联吡啶的催化下,以该PMMA微球作为苯乙烯原子转移自由基聚合的引发剂,成功进行了苯乙烯的接枝聚合,且聚合过程可控。
补充资料:填充离子交换树脂的电渗析器、电渗析填充床等
分子式:
CAS号:

性质:又称填充离子交换树脂的电渗析器、电渗析填充床等。这是将离子交换树脂充填入电渗析器隔室中,将电渗析与离子交换树脂结合一起的一种脱盐方法。这种装置可以提高脱盐室的电导,并能有效地防止极化沉淀以制备高纯水。但其结构比较复杂,拆装不便。其工作原理为:将H+,OH-型阳、阴树脂予混后填充入电渗析器脱盐室。在直流电场作用下,阴、阳树脂与溶液中的阴、阳离子进行交换。之后,由于电解再生,树脂分别又转为H+,OH-型,解吸的阴、阳离子分别通过阴、阳膜进入浓缩隔室。

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