首页> 外文期刊>Journal of solid state electrochemistry >Gray to transmissive electrochromic switching based on electropolymerized PEDOT-ionic liquid functionalized graphene films
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Gray to transmissive electrochromic switching based on electropolymerized PEDOT-ionic liquid functionalized graphene films

机译:基于电聚合PEDOT-离子液体功能化石墨烯薄膜的灰色至透射电致变色转换

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摘要

A supporting electrolyte based on lithium perchlorate has been functionalized with graphene (ionic liquid functionalized graphene (IFGR)) by facile electrochemical exfoliation of graphite rods in aq. LiClO4 solution. Poly(3,4-ethylenedioxythiophene) (PEDOT)-IFGR films were prepared by electropolymerization of EDOT monomer with IFGR as supporting electrolyte in ethanol at static potential of 1.5 V. The Raman, SEM, and XPS analysis of PEDOT-IFGR film confirmed the presence of functionalized graphene in the film. The PEDOT-IFGR films showed good electrochemical properties, better ionic and electrical conductivity, significant band gap, and excellent spectroelectrochemical and electrochromic properties. The electrical conductivity of PEDOT-IFGR film was measured as about 3968 S cm(-1). PEDOT-IFGR films at reduced state showed strong and broad absorption in the whole visible region and remarkable absorption at near-IR region. PEDOT-IFGR film showed electrochromic response between transmissive blue and darkish gray at redox potential. The color contrast (%T) between fully reduced and oxidized states of PEDOT-IFGR film is 25 % at lambda (max) of 485 nm. The optical switching stability of PEDOT-IFGR film has retained 80 % of its electroactivity even after 500 cycles.
机译:基于高氯酸锂的辅助电解质已通过石墨棒在水溶液中的简便电化学剥离而被石墨烯(离子液体功能化石墨烯(IFGR))官能化。 LiClO4溶液。聚(3,4-乙撑二氧噻吩)(PEDOT)-IFGR膜是通过将EDGR单体与IFGR作为支撑电解质在乙醇中以1.5 V静电势电聚合而制得的。PEDOT-IFGR膜的拉曼光谱,SEM和XPS分析证实了薄膜中存在功能化石墨烯。 PEDOT-IFGR膜表现出良好的电化学性能,更好的离子导电性,明显的带隙以及出色的光谱电化学和电致变色性能。 PEDOT-IFGR膜的电导率测量为约3968 S cm(-1)。处于还原状态的PEDOT-IFGR薄膜在整个可见光区域显示出强而宽的吸收,而在近红外区域显示出显着的吸收。 PEDOT-IFGR膜在氧化还原电势下显示透射型蓝色和深灰色之间的电致变色响应。 PEDOT-IFGR膜的完全还原态与氧化态之间的色彩对比度(%T)在λ(最大值)为485 nm时为25%。即使经过500次循环,PEDOT-IFGR薄膜的光学开关稳定性仍保持其80%的电活性。

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