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A new class of solid polymer electrolyte: synthesis and ionic conductivity of novel polysiloxane containing allyl cyanide groups

机译:新型固体高分子电解质:新型含烯丙基氰化物基团的聚硅氧烷的合成和离子电导率

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摘要

A monomer; (3-cyanopropyl)methylsiloxane cyclics, is prepared by a hydrosiliylation reaction of 2,4,6,8-tetramethylcyclotetrasiloxane with allyl cyanide in toluene using a platinum(0)-1,3-divinyl-1,1,3,3-tetramethyl disiloxane complex as the catalyst. The cross-linkable polysiloxane is synthesised by ring-opening polymerisation with (3-cyanopropyl) methylsiloxane cyclics using fuming sulfuric acid. The polymers, abbreviated as D_4D_2-n indicates the number of cyanide groups in the side chain), are characterised by FT-IR and ~1H NMR. The solid polymer electrolyte is prepared by UV irradiation in an Indium-tin oxide cell. The cyanide pendants on the network backbones make the lithium salt easy to dissolve, accelerate the migration of free lithium ions, and can lower the glass transition temperature (T_g) of the electrolyte. The maximum conductivity of the polymer with n = 55 is 3.38 x 10~(-5) S cm~(-1) at room temperature. The temperature dependence of ionic conductivity (σ) obeys the Vogel-Tammann-Fulcher relationship which implies ionic conductivity (σ) obeys the Vogel-Tammann-Fulcher relationship which implies a free-volume cation transport mechanism.
机译:单体; (3-氰基丙基)甲基硅氧烷环是通过2,4,6,8-四甲基环四硅氧烷与烯丙基氰化物在甲苯中使用铂(0)-1,3-二乙烯基-1,1,3,3-进行氢硅化反应制备的四甲基二硅氧烷配合物为催化剂。通过使用发烟硫酸与(3-氰基丙基)甲基硅氧烷环的开环聚合反应来合成可交联聚硅氧烷。缩写为D_4D_2-n的聚合物表示侧链中的氰化物基团数),通过FT-IR和〜1H NMR表征。固体聚合物电解质通过在铟锡氧化物电池中进行紫外线照射来制备。网络主干上的氰化物侧基使锂盐易于溶解,加速游离锂离子的迁移,并可以降低电解质的玻璃化转变温度(T_g)。 n = 55的聚合物在室温下的最大电导率为3.38 x 10〜(-5)S cm〜(-1)。离子电导率(σ)的温度依赖性服从Vogel-Tammann-Fulcher关系,这意味着离子电导率(σ)服从Vogel-Tammann-Fulcher关系,这意味着自由体积阳离子迁移机理。

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