1) seed-polymerization
种子共聚合
2) seeded emulsion copolymerization
种子乳液共聚合
3) unseeded emulsion copolymerization
无种子乳液共聚合
1.
By solution to the model established above, it is shown that miscelle nucleation is much more important than homogeneous nucleation for the unseeded emulsion copolymerization of vinyl acetate(VAc) and methyl methacrylate(MMA).
建立了VAc/MMA半连续无种子乳液共聚合数学模型。
4) Seed polymerization
种子聚合
1.
According to the application results,the optimum reaction conditions were described as below:seed polymerization,temperature .
确定了较佳的合成条件:种子聚合法,反应温度85℃,反应时间5·0h,w(DMC)=15%,w(PVA)=4·0%,w(KSP)=0·2%,w(EGME)=1·0%,n(BA)∶n(St)=1·2∶1·0。
2.
In this work, micro-size monodisperse polymer microspheres were prepared through seed polymerization of Styrene and α-methacrylic acid with 2,2'-azobisbutyronotrile as initiator in ethanol-water medium in the presence of 2.
研究了在乙醇/水介质中,以聚乙烯吡咯烷酮(PVP)为分散剂,偶氮二异丁腈(AIBN)为引发剂,聚苯乙烯为种子时,苯乙烯(St)和α-甲基丙烯酸(MAA)进行种子聚合的行为。
3.
0075g/mL when seed polymerization is going on.
5%,种子聚合时其浓度为0。
5) seeded polymerization
种子聚合
1.
Polymerization methods and the application researches of monodisperse polymer microspheres are summarized and dispersion polymerization and seeded polymerization are discussed in detail.
综述了单分散聚合物微球的制备方法和研究进展,具体介绍了分散聚合和种子聚合。
2.
Monodisperse seeds were prepared bydispersion polymerization and monodisperse polymer micro-spheres were prepared byseeded polymerization method.
首先采用分散聚合法制备出单分散聚苯乙烯种子和聚甲基丙烯酸甲酯种子微球,在使用溶胀种子聚合法制备单分散的聚苯乙烯微球和各种单体的共聚物微球。
补充资料:共种子
【共种子】
(术语)又曰共相种子。对于不共种子而言。生自他共变之境之识变种子也。自此种子而生之境,有自他共得受用者与不然者之别。
(术语)又曰共相种子。对于不共种子而言。生自他共变之境之识变种子也。自此种子而生之境,有自他共得受用者与不然者之别。
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