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Preparation and ionic conductivity of composite polymer electrolytes based on hyperbranched star polymer

机译:基于超支化星形聚合物的复合高分子电解质的制备及离子电导率

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Hyperbranched star polymer HBPS-(PPEGMA)_x was synthesized by atom transfer radical polymerization (ATRP) using hyperbranched polystyrene (HBPS) as macroinitiator and poly(ethylene glycol) methyl ether meth-acrylate (PEGMA) as monomer. The structure of the prepared hyperbranched star polymer was characterized by ~H NMR, ATR-FTIR, and GPC. Polymer electrolytes based on HBPS-(PPEGMA)_x, lithium salt, and/or nano-TiO2 were prepared. The influences of lithium salt concentration and type, nano-TiO2 content, and size on ionic conductivity of the obtained polymer electrolytes were investigated. The results showed that the low crystallinity of the prepared polymer electrolyte was caused by the interaction between lithium salt and polymer. The addition of TiO2 into HBPS-(PPEGMA)_x/ LiTFSI improved the ionic conductivity at low temperature. The prepared composite polymer electrolyte showed the highest ionic conductivity of 9 x 10~(-5) S cm~(-1) at 30 °C when the content of TiO2 was 15 wt% and the size of TiO2 was 20 nm.
机译:以超支化聚苯乙烯(HBPS)为大分子引发剂,以聚(乙二醇)甲基醚甲基丙烯酸甲酯(PEGMA)为单体,通过原子转移自由基聚合(ATRP)合成了超支化星形聚合物HBPS-(PPEGMA)_x。通过1 H NMR,ATR-FTIR和GPC对制备的超支化星形聚合物的结构进行了表征。制备了基于HBPS-(PPEGMA)_x,锂盐和/或纳米TiO2的聚合物电解质。研究了锂盐浓度,类型,纳米TiO2含量和粒径对所得聚合物电解质离子电导率的影响。结果表明,所制备的聚合物电解质的低结晶度是由锂盐与聚合物之间的相互作用引起的。在HBPS-(PPEGMA)_x / LiTFSI中添加TiO2可改善低温下的离子电导率。当TiO 2的含量为15 wt%,TiO 2的粒径为20 nm时,所制得的复合高分子电解质在30°C时具有最高的离子电导率,为9 x 10〜(-5)S cm〜(-1)。

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