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基于 TiO@poly[Ni(salen)] 纳米复合材料的多色电致变色薄膜,具有优异的电化学稳定性。

Multicolour Electrochromic Film Based on a TiO@poly[Ni(salen)] Nanocomposite with Excellent Electrochemical Stability.

机构信息

Department of Chemistry, University of Leicester , Leicester LE1 7 RH, U.K.

出版信息

Langmuir. 2017 Jul 11;33(27):6826-6837. doi: 10.1021/acs.langmuir.7b01380. Epub 2017 Jun 29.

Abstract

We report the electrochromic properties of a polymeric nanocomposite prepared by potentiodynamic deposition of transition-metal complex [Ni(3-Mesalen)], designated as [1], in the presence of TiO nanoparticles (NPs) with an average size of 9.7 ± 1.1 nm. Entrapment of TiO NPs in the poly[1] matrix was confirmed by several techniques. The nanocomposite TiO@poly[1] films showed similar electrochemical responses to the original (nanoparticle-free) poly[1] films, but with higher electroactive surface coverages (Γ), showing the advantage of the nanocomposite preparation. The results indicated that the electronic structure of poly[1] was retained in the nanocomposite; nonetheless, a lower ε value was obtained for the charge-transfer band of the former, revealing superior stability of the nanocomposite for ligand high oxidation states. The TiO@poly[1] nanocomposite showed interesting color changes, from yellow (reduced state) to green and russet (oxidized states), with enhanced electrochemical stability, demonstrated by a charge loss of only 7.3% over ca. 10 000 redox cycles surpassing the original polymer film stability: the loss of electroactivity is a factor of ca. 2 less than for pristine poly[1]. Furthermore, an enhancement of 16.7% in the optical modulation (ΔOD = 0.48) was also observed for the nanocomposite, confirming the benefit of TiO incorporation into the EC properties of the original polymer film.

摘要

我们报告了一种通过在过渡金属配合物[Ni(3-Mesalen)](称为[1])存在下的动电势沉积制备的聚合物纳米复合材料的电致变色性质,其中掺入了平均尺寸为 9.7±1.1nm 的 TiO 纳米粒子(NPs)。几种技术证实了 TiO NPs 在聚[1]基质中的包埋。TiO@poly[1]纳米复合材料薄膜表现出与原始(无纳米粒子)聚[1]薄膜相似的电化学响应,但具有更高的电活性表面积覆盖度(Γ),显示出纳米复合材料制备的优势。结果表明,聚[1]的电子结构在纳米复合材料中得以保留;然而,对于前者的电荷转移带,获得的 ε 值较低,表明纳米复合材料对于配体高氧化态具有更高的稳定性。TiO@poly[1]纳米复合材料表现出有趣的颜色变化,从黄色(还原态)变为绿色和赤褐色(氧化态),同时具有增强的电化学稳定性,在大约 10000 次的氧化还原循环中仅损失 7.3%的电荷,超过了原始聚合物薄膜的稳定性:电活性的损失大约是原始聚[1]的一半。此外,纳米复合材料的光学调制(ΔOD=0.48)也提高了 16.7%,证实了 TiO 掺入原始聚合物薄膜的 EC 性质的益处。

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