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1)  polymer electrolyte
聚合物电解质
1.
Preparation of PAALi-based solid polymer electrolyte by the method of copolymerization;
共聚改性制备聚丙烯酸锂基固态聚合物电解质
2.
Preparation of non-woven fabrics reinforced polymer electrolyte by evaporation;
直接挥发法制备无纺布增强型聚合物电解质
3.
New systems on solid polymer electrolyte;
全固态聚合物电解质的性能研究
2)  polymer electrolytes
聚合物电解质
1.
Recent research on the modification of polymer electrolytes in Li-ion batteries;
锂离子电池聚合物电解质的改性研究进展
2.
Research progress in ionic liquid-polymer electrolytes;
离子液体聚合物电解质的研究进展
3.
Recent advance in the research of solid/solid interface between lithium electrode and polymer electrolytes(PE) in lithium polymer batteries is reviewed.
综述了聚合物锂电池中锂/聚合物电解质电化学固/固界面的研究进展。
3)  polyelectrolyte [英][,pɔlii'lektrəu,lait]  [美][,pɑliɪ'lɛktrə,laɪt]
聚合物电解质
1.
The polyelectrolyte membrane was prepared by interaction between chitosan (CS) and carboxymethylcellulose (CMC) using glutaraldehyde as linkage reagent.
以戊二醛为交联剂,制备了壳聚糖(CS)-羧甲基纤维素(CMC)聚合物电解质膜。
4)  Polyelectrolyte complex
聚电解质复合物
1.
Polyelectrolyte complex formed from diazoresin(DR) as cationic polyelectrolyte and alkaline hydrolysate of styrenemaleic anhydride copolymer(PSMNa) as anionic polyelectrolyte does not dissolve in water or organic solvents due to its ionic crosslinking structure.
聚电解质复合物 ( PEC)因其独特的物理化学性质而受到广泛关注 。
2.
Recently, in drug controlled release system, polyelectrolyte complexes have been rewarded much attention.
近年来聚电解质复合物在药物控释领域受到重视。
3.
his review introduced the forming mechanism and character of polyelectrolyte(PEL) and polyelectrolyte complex(PELC),gave a retrospect to their contribution in the leather theory study, and pointed out their important denotation in theory studying and practice.
介绍了聚电解质(PEL)和聚电解质复合物(PELC)的生成机理和性质,对其在皮革理论研究中的作用进行了综述,指出了聚电解质理论在理论和应用中的重要意义。
5)  polyelectrolyte complex
聚电解质配合物
1.
Chitosan/pectin polyelectrolyte complex(PEC) was preparped through the reaction between natural chitosan and pectin, and a PEC membrane was made.
用天然多糖壳聚糖和果胶合成壳聚糖 /果胶聚电解质配合物 ( PEC) ,探讨了 PEC合成过程反应机理 ,考察 PEC薄膜在水溶液中的溶胀行为、对 p H刺激响应性和做药物释放载体的可能性。
2.
They can be classified as following kinds:charged,grafted,IPN,polyelectrolyte complex,conducting polymer,etc.
本文把智能型高分子分离膜分为荷电型、接枝型、互穿网络型、聚电解质配合物型和导电聚合物型等五种类型,并介绍这一新领域已取得的一些进展和应用前景。
6)  Nonelectrolytic macromolecule
非电解质聚合物
补充资料:聚合物电解质
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性质: 高聚物离子导体,其链节单元中含有可解离性离子基团。按导电离子的类型,可分为阴离子、阳离子或双离子导体。常见的离子交换树脂及离子交换膜即为高聚物电解质。可用作固态高聚物电解质的基体材料较多,它们是非导体,加入锂盐离子导电性将极大地提高,为了进一步提高其电导率和增加其柔软性,通常还在其中添加有机溶剂作增塑剂。由于其良好的加工性能在全固态锂电池、电致变色器件、高容量电容器中有着广阔的应用前景。

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