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A novel bis(dihydroxypropyl) viologen-based all-in-one electrochromic device with high cycling stability and coloration efficiency

机译:一种新的双(二羟基丙基)viologen基一体化电致变色装置,具有高循环稳定性和着色效率

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Electrochromism and related devices have been studied for a few decades from both fundamental and technological point of view. At the present stage, screening electrochromic materials with excellent properties is still an interesting job. In our previous work, we have demonstrated that hydroxyalkyl viologens could exhibit satisfying electrochromic behavior. Further, in this paper, the bis(dihydroxyalkyl) viologen, (1,1'-bis(2,3-dihydroxypropyl) 4,4'-bipyridine derivative dichloride, DHPV2+ 2Cl(-), was synthesized and incorporated as an electrochromic chromophore in the all-in-one electrochromic devices (ECDs) on the basis of poly (vinyl butyal) (PVB)-carbonate and poly (vinyl alcohol) (PVA)-borax gel electrolytes, respectively. It was found that DHPV2+ 2Cl(-) in PVB-based gel ECDs underwent reversible switching between transparent and deep blue hue, whereas the clear color changes from colorlessness to amaranth in PVA-borax-based ones upon the potential ranges from 0 V to -1.0 V. For PVB-based gel ECD, spectroelectrochemical studies demonstrated that it only needs a low coloration voltage down to -0.6 V, and exhibites high coloration efficiency (eta) up to 301cm(2)/C. The optical contrast of it only reduces by 1% after consecutive operation for 10000 cycles between -1.0 V and 0 V, demonstrating an excellent cycling stability of this kind of device. The ECD based on PVA-borax gel modified with glycerol shows burgundy, and good electrochromic performance. It is interesting to note that a relatively large-area PVB-based gel electrochromic devices up to 168 cm(2) was realized, the driving voltage and response time being -1.5 V and 12 s, respectively, for blue-violet coloration state. The advantages of electrochromic properties exhibited by 1,1'-bis(2,3-dihydroxypropyl) viologen dichloride over those reported can be regarded as a pronounced improvement for organic electrochromic materials, and are expected to set the stage for novel electrochromic devices such as smart window and display applications and so forth. (C) 2018 Elsevier Ltd. All rights reserved.
机译:电致变色和相关设备已经研究了从两个视基本面和技术点了几十年。在现阶段,筛选电致变色材料具有优异的性能仍然是一个有趣的工作。在我们以前的工作,我们已经证明,羟紫罗能表现出满意的电致变色行为。此外,在本文中,双(二羟基烷基)紫精,(1,1'-双(2,3-二羟基丙基)4,4'-联吡啶衍生物,二氯化DHPV2 + 2CL( - ),合成并引入作为电致变色发色团。在聚(乙烯butyal)的基础(PVB) - 碳酸酯和聚(乙烯醇)(PVA)-borax凝胶电解质上的所有功能于一身的电致变色器件(ECD的),分别研究发现,DHPV2 + 2CL( - )在基于PVB的凝胶的ECD在所述电位范围从0V到-1.0 V.对于PVB基凝胶进行透明和深蓝色的色调之间的可逆切换,而清晰的颜色变化从无色到苋菜在 - 硼砂基于PVA的人ECD,光谱电化学研究表明,它仅需要一个低着色电压降至-0.6 V,和高件展示着色效率(ETA)高达301厘米(2)/ C。它的光学对比度仅1%,连续操作之后减少-1.0和0V之间10000次循环,这表明这种类型的优异的循环稳定性的设备。改性甘油节目酒红,和电致变色良好性能基于PVA-硼砂凝胶的ECD。有趣的是,请注意,一个相对大面积的基于PVB的凝胶电致变色器件高达168厘米(2)中的溶液来实现,驱动电压和响应时间感-1.5 V和12秒,分别为蓝紫色着色状态。电致变色性能的优点表现出由1,1'-双(2,3-二羟基丙基)二氯化紫精对这些报告可以被视为用于有机电致变色材料具有显着的改善,并且预期设置了阶段为新颖的电致变色设备,例如智能窗和显示应用等等。 (c)2018年elestvier有限公司保留所有权利。

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