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首页> 外文期刊>Frontiers in Chemistry >Bis(terpyridine) Iron(II) Functionalized Vertically-Oriented Nanostructured Silica Films: Toward Electrochromic Materials
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Bis(terpyridine) Iron(II) Functionalized Vertically-Oriented Nanostructured Silica Films: Toward Electrochromic Materials

机译:双(三吡啶)铁(II)官能化垂直导向的纳米结构二氧化硅膜:朝向电致变色材料

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摘要

Recent and potential applications of electrochromic materials include smart windows, optoelectronic devices and energy conversion. In this study, we have incorporated bis(terpyridine) iron (II) complexes into vertically-oriented silica thin films deposited on indium-tin oxide (ITO) and their electrochromic behaviour has been investigated. If 2,2':6',2''-terpyridine is commonly used as a ligand for forming metallo-supramolecular assemblies, with the objective to get metal-terpyridine complexes with multiple stable redox states, their simple and reliable arrangement into linear structures enabling effective electronic communication is however more challenging. We propose to overcome this difficulty by generating such complexes within vertical nanochannels on electrode. Terpyridine ligands were firstly immobilized by combining a click chemistry azide/alkyne approach with an electrochemically-assisted self-assembly (EASA) method used to grow an oriented mesoporous silica membrane bearing azide groups which were further derivatized with 4'-ethynyl-terpyridine ligands. The resulting terpyridine-functionalized films were consecutively dipped in an aqueous solution of FeClO4 and then in a solution of terpyridine in acetonitrile to form the bis(terpyridine) iron (II) complexes in situ. The electrochromic properties of the films functionalized at various levels were examined by monitoring the changes in their UV/Vis spectra upon electrochemical oxidation at controlled potential of +1.2 V vs. Ag/AgCl. Due to facile charge delocalization during the Fe 2+ to Fe 3+ redox process, the bis(terpyridine) iron (II) functionalized silica films exhibited electrochromic properties by changing from violet to non-colored using TBABF4 in acetonitrile as an electrolyte. The bis(terpyridine) iron(II) film experienced reversible electrochromic switching by applying +0.5 V in a reverse reduction electrochemical process.
机译:电致变色材料的近期和潜在应用包括智能窗口,光电器件和能量转换。在该研究中,我们已将双(硝基吡啶)铁(II)复合物掺入沉积在氧化铟锡(ITO)上的垂直取向的二氧化硅薄膜,并研究了它们的电致变色行为。如果2,2':6',2'' - 萜烯酮通常用作形成金属 - 超分子组件的配体,目的是通过多种稳定的氧化还原态,它们简单可靠的布置成线性结构来获得金属 - 吡啶配合物无论有效的电子通信都更具挑战性。我们建议通过在电极上的垂直纳米中产生这种复合物来克服这种困难。首先通过将咔哒化化学叠氮化物/炔烃方法与用于生长带有4'-乙炔基 - 吡啶配体的叠氮胺基团的导向的介孔二氧化硅膜的含有叠氮基的介孔硅膜的方法来固定噻吩并吡啶配体。将得到的钛吡啶官能化薄膜连续浸入FeClO4的水溶液中,然后在乙腈中的噻啶汀溶液中浸渍,以形成原位的双(萜烯吡啶)铁(II)配合物。通过监测在控制电位的电化学氧化在+1.2V与Ag / AgCl的电化学氧化时通过监测其UV / Vis光谱的变化来检查在各种水平下官能化的膜的电致变色性质。由于在Fe 2+至Fe 3+氧化还原过程中,通过在乙腈中以乙腈在乙腈中以乙腈在乙腈中以乙腈作为电解质而在乙腈中以非颜色改变而表现出电致变色特性的双(萜嘧啶)铁(II)官能化二氧化硅膜。双(三吡啶)铁(II)膜通过在反向减少电化学过程中施加+0.5V而经历可逆电致变色切换。

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