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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Solid polymer electrolytes. IV. Preparation and characterization of novel crosslinked epoxy-siloxane polymer complexes as polymer electrolytes
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Solid polymer electrolytes. IV. Preparation and characterization of novel crosslinked epoxy-siloxane polymer complexes as polymer electrolytes

机译:固体聚合物电解质。 IV。新型交联环氧-硅氧烷聚合物配合物的制备与表征

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Two series of novel crosslinked siloxane-based polymers and their complexes with lithium perchlorate (LiClO4) were prepared and characterized by Fourier transform infrared spectroscopy, solid-state NMR (C-13, Si-29, and Li-7 nuclei), and differential scanning calorimetry. Their thermal stability and ionic conductivity of these complexes were also investigated by thermogravimetric and AC impedance measurements. In these polymer networks, poly(propylene oxide) chains with different molecular weights were introduced through self-synthesized epoxy-siloxane precursors cured with two curing agents. The glass-transition temperature (T-g) of these copolymers is dependent on the length of the ether units. The dissolution of LiClO4 considerably increases the T-g of the polyether segments. The dependence of the ionic conductivity was investigated as a function of temperature, LiClO4 concentration, and the molecular weight of the polyether segments. The ion-transport behavior was affected by the combination of the ionic mobility and number of carrier ions. The Li-7 solid-state NMR line shapes of these polymer complexes suggest a significant interaction between Li+ ions and the polymer matrix, and temperature- and LiClO4 concentration-dependent chemical shifts are correlated with ionic conductivity. (C) 2002 Wiley Periodicals, Inc. [References: 26]
机译:制备了两个系列的新型交联硅氧烷基聚合物及其与高氯酸锂(LiClO4)的配合物,并通过傅里叶变换红外光谱,固态NMR(C-13,Si-29和Li-7核)和差示法进行了表征扫描量热法。还通过热重和交流阻抗测量研究了这些配合物的热稳定性和离子电导率。在这些聚合物网络中,通过用两种固化剂固化的自合成环氧硅氧烷前体引入了不同分子量的聚环氧丙烷链。这些共聚物的玻璃化转变温度(T-g)取决于醚单元的长度。 LiClO4的溶解会大大增加聚醚链段的T-g。研究了离子电导率与温度,LiClO4浓度和聚醚链段分子量的关系。离子迁移行为受离子迁移率和载流子离子数量的组合影响。这些聚合物配合物的Li-7固态NMR线形表明Li +离子与聚合物基质之间存在显着的相互作用,并且温度和LiClO4浓度依赖性的化学位移与离子电导率相关。 (C)2002 Wiley Periodicals,Inc. [参考:26]

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