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Interfacial redox centers as origin of color switching in organic electrochromic device

机译:界面氧化还原中心是有机电致变色器件中颜色转换的起源

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In an attempt to understand the color switching mechanism of organic electrochromic devices, live spectroscopy of a viologen based device has been done. Role of redox reactions taking place at the electrode/electrolyte interface has been identified using Raman and UV-Vis spectroscopies carried out during the device operation. In -situ Raman and transmission/absorption studies establish the origin of bias induced color change, between a transparent and navy blue color, in the electrochromic device. The origin of color change has been attributed to the bias induced redox switching between its dication and free radical forms which have different optical properties from each other. Raman spectra collected from negative and positive electrodes of the device reveal that blue color species (free radical) are present at the negative electrode which is created due to reduction of the dicationic form. In-situ UV-Vis spectra reveals that the navy blue color of the device under biased condition is not due to increase in the transparency corresponding to the blue wavelength but due to suppression of its transparency corresponding to the complementary colors as studied using a from CIE (Commission Internationale de l'Eclairge International Commission on Illumination) chart. Absorption modulation has been reported from the device with good ON/OFF contrast of the device. (c) 2017 Elsevier B.V. All rights reserved.
机译:为了理解有机电致变色器件的颜色转换机理,已经进行了基于紫精的器件的实时光谱学研究。氧化还原反应在电极/电解质界面发生的作用已通过使用拉曼光谱和在设备操作过程中进行的UV-Vis光谱学确定。原位拉曼光谱和透射/吸收研究确定了电致变色器件中由偏光引起的颜色变化的起源,该颜色变化介于透明色和海军蓝色之间。颜色变化的起源归因于偏光诱导的氧化还原在其指示和自由基形式之间的切换,所述自由基形式具有彼此不同的光学性质。从器件的负电极和正电极收集的拉曼光谱表明,由于负离子形式的减少,在负电极处存在蓝色物种(自由基)。原位UV-Vis光谱显示,在偏斜条件下设备的藏青色不是由于对应于蓝色波长的透明度增加,而是由于抑制了对应于互补色的透明度,如使用CIE进行的研究(国际照明委员会国际照明委员会)图表。已经报道了从设备进行的吸收调制,具有良好的设备开/关对比度。 (c)2017 Elsevier B.V.保留所有权利。

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