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Solid polymer electrolytes based on coupling of polyetheramine and organosilane for applications in electrochromic devices

机译:基于聚醚胺和有机硅烷偶联的固体聚合物电解质电致变色装置中的应用

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Abstract In this work, cyanuric chloride is employed as the core element to react with polyetheramine in various ratios, and then chemical crosslinking with an organosilane, i.e., (3-isocyanatopropyl)triethoxysilane (ICPTES) to form a new organic-inorganic hybrid electrolyte with a core branched structure. The solid state of the hybrid electrolyte is fabricated via the doping of LiClO4 salt, and possessed the maximum ionic conductivity value of 1.1×10?4 Scm?1 at 30°C and electrochemical stability window of around 5.0V for the sample with the [O]/[Li] ratio of 32. The structure of the organic-inorganic hybrid is confirmed by FTIR and solid-state NMR measurements. The lithium ion mobility in the hybrid electrolyte is investigated by monitoring the lithium linewidths from static 7Li solid-state NMR. An optical density change value of 0.56 and an exceptionally high coloration efficiency value of 675cm2 C?1 with good cycle life are obtained when the present hybrid electrolyte is employed to fabricate the prototype electrochromic device. These electrochromic performances are the best as compared to the previously reported electrochromic devices made of hybrid electrolytes. The present organic-inorganic hybrid electrolyte holds great potentials to be used i
机译:<![cdata [ 抽象 在本作品中,使用氰尿氯作为核心元素,以在各种比例中与聚醚作出反应,然后用化学品用有机硅烷交联,即(3-异氰酸丙基)三乙氧基硅烷(ICPTES)以形成具有核心支化结构的新的有机无机杂化电解质。通过LiClo的掺杂制造杂交电解质的固态 4 盐,并具有1.1 × 10 4 S CM 1 在30时°C和电化学稳定性窗口约为5.0 0.25英寸/> v,其中[o] / [li]比例为32.该结构通过FTIR和固态NMR测量证实有机 - 无机杂种。通过监测来自静态 7> 7> Li固态NMR的静态宽的锂离子迁移率来研究杂交电解质中的锂离子迁移率。光学密度变化值为0.56和极高着色效率值675 cm 2 c 1 当采用本发明的混合电解质时获得良好的循环寿命。制造原型电致变色装置。与先前报道的杂交电解质制成的电致变色器件相比,这些电致变色性能是最佳的。本发明的有机无机杂交电解质具有巨大的使用潜力

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