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Synthesis, characterisation and in situ colorimetry of electrochromic Ruthenium purple thin films

机译:电致变色钌紫薄膜的合成,表征及原位比色

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摘要

Ruthenium purple (RP) films on transmissive tin-doped indium oxide (ITO)/glass substrates have been synthesised by an electrochemical coagulation technique using an aqueous RP colloidal suspension prepared from separate very dilute aqueous solutions of iron(III) chloride and potassium hexacyanor-uthenate(II), with dilute potassium chloride as supporting electrolyte solution. To aid stability of the RP films, ruthenium(III) chloride was added to the RP colloidal suspension. Using the CIE (Commission Internationale de l'Eclairage) system of colorimetry, the colour stimulus of the electrochromic RP films and the changes that take place on revefsibly switching to the colourless form have been calculated from in situ visible spectra recorded under electrochemical control. On electrochemical reduction, the intensely absorbing bright purple mixed-valence iron(III) hexacyanoruthenate(II) chromophore is reduced to the colourless iron(II) hexacyanoruthenate(II) form. Sharp and reversible changes in the hue and saturation occur, as shown by the track of the CIE 1931 xy chromaticity coordinates. Concurrently, as the purple chromophore is bleached, a large increase in the relative luminance of the electrochromic film is observed. For the purple state, the CIELAB 1976 colour space coordinates were L* = 64, a* = 27 and b* = -36, with a complementary wavelength (λ_c) calculated as 555 nm, in excellent agreement with the absorption maximum (λ_(max)) of 550 nm for the intervalence charge-transfer (IVCT) band.
机译:通过电化学凝结技术,使用水性RP胶体悬浮液,由氯化亚铁(III)和六氰化钾-钾的单独极稀水溶液制备而成,在透射锡掺杂的氧化铟(ITO)/玻璃基板上合成了钌紫色(RP)膜。乙二酸盐(II),以稀氯化钾为辅助电解液。为了提高RP膜的稳定性,将氯化钌(III)添加到RP胶体悬浮液中。使用比色法的CIE(国际照明委员会)系统,由电化学控制下记录的原位可见光谱可计算出电致变色RP膜的颜色刺激以及可恢复地转换为无色形式时发生的变化。通过电化学还原,将强烈吸收的亮紫色混合价六氰基甲酸酯铁(III)生色团还原为无色六氰基甲酸酯铁(II)形式。如CIE 1931 xy色度坐标的轨迹所示,色调和饱和度会发生急剧且可逆的变化。同时,当紫色发色团被漂白时,观察到电致变色膜的相对亮度大大增加。对于紫色状态,CIELAB 1976颜色空间坐标为L * = 64,a * = 27和b * = -36,互补波长(λ_c)计算为555 nm,与吸收最大值(λ_( 550nm的间隔电荷转移(IVCT)波段)。

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