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1)  porous polymer electrolyte
多孔杂化电解质膜
1.
The porous poly(vinylidene fluoride-hexafluoropropylene)(PVDF-HFP)/TiO2 composite membranes were prepared by sol-gel combined with phase inversion method using PVDF-HFP and TBT as principal raw materials, and the porous polymer electrolytes were formed by porous PVDF-HFP/TiO2 membranes filled and swollen by a liquid electrolyte.
将溶胶-凝胶法与相转化法结合,以偏氟乙烯-六氟丙烯共聚物(PVDF-HFP)、钛酸四丁酯为主要原料,制备了PVDF-HFP/TiO2多孔杂化膜,经电解液活化后得到PVDF-HFP/TiO2多孔杂化电解质膜
2)  porous diaphragm cell
多孔隔膜电解池
3)  polyelectrolyte multilayers
聚电解质多层膜
1.
Pristine polyelectrolyte multilayers(PEMs) was prepared by a time-and cost-efficient spin-assisted layer-by-layer(SA-LBL) technique which poly(diallyldimethylammonium chloride) and poly(sodium 4-styrenesulfonate) were sequential droped alternately onto a rotating substrate.
用快速高效的旋涂辅助分子沉积技术在旋转的基底上滴加相反电荷的聚二烯丙基二甲基氯化铵和聚对苯乙烯磺酸钠制备出初始聚电解质多层膜(PEMs),在PEMs上吸附Cu2+然后于硼氢化钠溶液中还原,通过9次吸附-还原循环,在PEMs内原位生成Cu纳米微粒,构成Cu纳米微粒掺杂的聚电解质多层膜。
2.
The fabrication of micro-structures on polymer surfaces has been fulfilled via patterned compression of polyelectrolyte multilayers (PEMs) and thermal pressing method (TPM) respectively.
本文分别利用聚电解质多层膜的压缩和热压技术两种方法构建了聚合物微结构。
4)  Doped TiO_2 nanoporous-film electrodes
掺杂TiO_2纳米多孔膜电极
5)  nanoporous SiO2/PI hybrid film
纳米多孔SiO2/PI杂化薄膜
6)  intensified seprater
强化电解质隔膜
补充资料:电解食盐水溶液离子膜电解槽所用的膜材料之一
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性质:又称全氟羧酸-磺酸复合离子膜  Rf-COOH-Rf-SO3H  电解食盐水溶液离子膜电解槽所用的膜材料之一。使用时,将较薄的羧酸层面向阴极,较厚的磺酸层面向阳极,因而兼有羧酸膜和磺酸膜的优点。由于Rf-COOH层的存在,可阻挡氢氧离子返迁移到阳极室,确保了高的电流效率(96%),因Rf-SO3层的电阻低,能在高电流密度下运行,且阴极液可用盐酸中和,产品氯气中氧含量低,氢氧化钠浓度可达33%~35%。可在全氟磺酸膜上涂敷一层全氟羧酸的聚合物,或是将磺酸膜和羧酸膜进行层压,或是采用化学方法处理而制得的复合膜。现以采用化学方法处理者质量最佳。

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