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1)  Optically active polyelectrolyte
旋光聚电解质
2)  polyelectrolyte [英][,pɔlii'lektrəu,lait]  [美][,pɑliɪ'lɛktrə,laɪt]
聚电解质
1.
Progress in preparation of pervaporation and nanofiltration membranes by self-assembly of polyelectrolyte;
聚电解质层层自组装制备PV、NF膜研究进展
2.
Effect of Additives on Characteristics of Polyelectrolyte Complex Membrane and Exploration of Related Mechanism;
添加物对聚电解质成膜特性的影响及相关机理探讨
3.
X-ray Reflectivity Studies on Metal Nanoparticle/Polyelectrolyte Multilayers;
金属纳米颗粒-聚电解质多层膜的X射线反射率研究
3)  polyelectrolytes
聚电解质
1.
The self-assembly of PcCu's derivant and polyelectrolytes;
酞菁铜衍生物与聚电解质的自组装
2.
Determination of Charge Density of Polyelectrolytes by Streaming Potential/Colloid Titration;
流动电位/胶体滴定法测定聚电解质电荷密度的研究
3.
Studies on a novel biosensing interfacial design based on polyelectrolytes and self-assembled nano-gold;
结合PAH聚电解质和纳米金界面的压电免疫传感器研究
4)  polyelectrolyte [英][,pɔlii'lektrəu,lait]  [美][,pɑliɪ'lɛktrə,laɪt]
聚合电解质
1.
The change of zeta potential of pulp slurry during the polyelectrolytes multilayer built up and the factors affecting the adsorption efficiency of polyelectrolytes on pulp were studied.
根据层层沉积技术原理,研究了在带负电荷的纸浆纤维表面构筑多层沉积膜过程中Zeta电位的变化和影响纤维吸附聚合电解质的因素。
2.
The research results showed that the deposition technique can add the absorbed amount of polyelectrolyte and cause potential changes in fiber surface.
研究结果表明:交替沉积技术可以增加聚合电解质在纤维表面的吸附量,并引起纤维表面电位的变化。
5)  polymer electrolyte membrane
聚电解质膜
1.
The aim of this work is to modify PPEK by means of sulfonation, chloromethylation/quaternization, doping sulfonated PPEK with inorganic particles such as cesium hydrogen sulfate (CS), zirconium hydrogen phosphate hydrate (ZrP) and 12-phosphotungstic acid (PWA), to prepare polymer electrolyte membranes (PEM) for fuel cells, and to stu.
研究了燃料电池用聚电解质膜制备及其结构与性能的关系。
6)  polyelectrolyte chain
聚电解质链
1.
Langevin dynamics simulation of complex of semiflexible polyelectrolyte chain with oppositely charged particles+;
半刚性聚电解质链与带相反电荷颗粒复合体系的动力学模拟
补充资料:聚电解质
聚电解质
polyelectrolytes

   线型或支化的合成和天然水溶性高分子,其结构单元上含有能电离的基团。又称高分子电解质。不溶性体型聚电解质归入离子交换树脂。
    聚电解质按电离的基团可分为:①聚酸类。电离后成为阴离子高分子,如聚丙烯酸(式a)、聚甲基丙烯酸(式b)、聚苯乙烯磺酸(式c)、聚乙烯磺酸(式d)、聚乙烯膦酸(式e )等。② 聚碱类。电离后成为阳离子高分子,如聚乙烯亚胺!!!J1640_1、聚乙烯胺(式f)等。此外,还有无机类的聚磷酸盐(式h)、聚硅酸盐 (式i)和天然的核酸、蛋白质。后二者因一分子中具有酸性和碱性两种可电离的基团,所以称为高分子两性电解质。
    !!!J1640_2
   聚电解质可用作食品、化妆品 、 药物和涂料的增稠剂、分散剂、絮凝剂、乳化剂、悬浮稳定剂、胶粘剂,皮革和纺织品的整理剂,土壤改良剂,油井钻探用泥浆稳定剂,纸张增强剂,织物抗静电剂。聚电解质还对生物显示许多生理作用。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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