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KI effects on the reversible electrodeposition of silver on poly(ethylene oxide) for application in electrochromic devices

机译:KI对在电致变色器件中应用的聚环氧乙烷上银的可逆电沉积的影响

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摘要

A new approach to electrochromics, based on the reversible coating-dissolution of an oxide from an inorganic electrochromic electrolyte consisting of a silver-amine complex in a polymer electrolyte (PEO), has proven successful. The reversible electrodeposition of silver onto indium-tin oxide coated glass (ITO) was investigated and the influence of HClO_4 and KI was evaluated. Several characteristics of the electrolyte Ag-PEO make it suitable for use in electrochromic reversible silver electrodeposition devices, such as visible absorption spectrum with an absorbance variation of 60%, an electrochromic efficiency of 5.2 cm~2 C~(-1) and an ionic conductivity 4.4 × 10~(-4) S cm~(-1). The addition of perchloric acid improved the transparency of Ag-PEO, and potassium iodide (KI) was fundamental in setting up the process of reversible silver electrodeposition in the PEO polymeric matrix. A description of the electrochemical processes implied is presented. A number of approaches focusing on the improvement of system performance are tested.
机译:一种新的电致变色方法已被证明是成功的,该方法基于从无机电致变色电解质中氧化物的可逆涂层溶解,该无机电致变色电解质由银-胺络合物组成。研究了银在铟锡氧化物涂层玻璃(ITO)上的可逆电沉积,并评估了HClO_4和KI的影响。 Ag-PEO电解质的一些特性使其适用于电致变色可逆银电沉积设备,例如可见吸收光谱,其吸光度变化为60%,电致变色效率为5.2 cm〜2 C〜(-1)和离子型电导率4.4×10〜(-4)S cm〜(-1)。高氯酸的添加改善了Ag-PEO的透明性,碘化钾(KI)是在PEO聚合物基体中建立可逆银电沉积过程的基础。提出了对所隐含的电化学过程的描述。测试了许多专注于改善系统性能的方法。

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