首页> 外文会议>IUPAC International conference on novel materials and their synthesis >ELECTROCHROMIC METALLOPOLYMER FILM PREPARED BY OXIDATIVE ELECTROPOLYMERIZATION OF THE FE(Ⅱ)-TERPYRIDINE COMPLEX WITH TRIPHENYLAMINE MODIFIED GROUPS
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ELECTROCHROMIC METALLOPOLYMER FILM PREPARED BY OXIDATIVE ELECTROPOLYMERIZATION OF THE FE(Ⅱ)-TERPYRIDINE COMPLEX WITH TRIPHENYLAMINE MODIFIED GROUPS

机译:用三苯胺改性基团的Fe(Ⅱ)氧化吡啶络合物制备的电致变色金属聚合膜

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A functionalized complex [Fe(L)_2](PF_6)_2 {L = 4'-[p-(diphenylamino)phenyl)]-2,2':6',2''-terpyridine} has been synthesized and confirmed successfully. Its oxidative electropolymerization has been conducted by continuous cycling of the working electrode potential from 0 to 1.8 V in 0.1 mol·L~(-1) Bu_4NClO_4/CH_3CN solution containing 5.0×10~(-4) molL~(-1) monomer. The purple hybrid polymer film exhibits a non-diffusional charge transfer behavior of Fe(Ⅲ)/Fe(Ⅱ) couple and an irreversible redox process of phenylamine moiety on the Pt working electrode, as well as high stability in monomer-free electrolytic solution. The film thickness is easily tuned by controlling the number of potential sweeping cycle, and the AC impedance of as-formed film increases with cycling number. The donor-acceptor (D-A) polymer film on ITO shows a broad and red-shifted ~1MLCT wave in the UV-vis spectrum and a clearly electrochromic behavior from purple to pale yellow with the times of 0.9 s for the coloration step and 1.7 s for the bleaching step, the optical contrast of 26.4 % and the coloration efficiency of 223 C~(-1)· cm~2. This work is supported by the Natural Science Foundation of Henan Province (No: 102300410221) and the Project supported by the Young Core Instructor from the Education Commission of Henan Province.
机译:官能化复合体[Fe(1)_2](PF_6)_2 {L = 4' - [P-(二苯基氨基)苯基)] - 2,2':6',2'' - Terpyridine}已被合成并成功证实。其氧化电池通过在含有5.0×10〜(-4)髓〜(-1)单体的0.1mol·L〜(-1)Bu_4NCLO_4 / CH_3CN溶液中的0-1.8V的0至1.8V的连续循环。紫色杂化聚合物膜表现出Fe(Ⅲ)/ Fe(Ⅱ)夫妇的非扩散电荷转移行为以及Pt工作电极上的苯胺部分的不可逆氧化还原方法,以及单体无电解液中的高稳定性。通过控制潜在的扫描循环的数量,容易调谐膜厚度,并且用循环数增加了作为形成的薄膜的AC阻抗。 ITO上的供体受体(DA)聚合物膜在UV-VIS谱中显示了宽和红移〜1mLCT波,并且从紫色到浅黄色的明显电致变色行为,为着色步骤,1.7 s的时间为0.9 s对于漂白步骤,光学对比度为26.4%,色调效率为223c〜(-1)·cm〜2。这项工作得到了河南省自然科学基金的支持(第No:102300410221)和来自河南省教育委员会的年轻核心教师支持的项目。

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