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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Recycling Indium Tin Oxide (ITO) Electrodes Used in Thin-Film Devices with Adjacent Hole-Transport Layers of Metal Oxides
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Recycling Indium Tin Oxide (ITO) Electrodes Used in Thin-Film Devices with Adjacent Hole-Transport Layers of Metal Oxides

机译:具有金属氧化物空穴传输层的薄膜设备中使用的回收铟锡氧化物(ITO)电极

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摘要

Many thin-film optoelectronic devices use electrodes made of tin-doped indium oxide (ITO), which is acceptably conductive, as well as virtually transparent and colorless. Regrettably, indium is an uncommon element and its price continues to rise, so it is increasingly important to recover ITO electrodes from devices that are no longer needed. Previous work has shown that simple sonication in neutral water can separate intact ITO electrodes from other components in typical devices, in which the active components and ITO are separated by an ionic buffer layer of poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS). Sonication in water appears to be effective because it favors selective penetration and dissolution of PEDOT:PSS, thereby freeing the underlying ITO electrode. However, PEDOT:PSS is being replaced in emerging devices by the use of various metal oxides as hole-transport materials. We have now found that ITO electrodes in these new devices can be recycled by sonication in dilute aqueous base. The layers of ITO undergo only minor changes in composition and morphology, and the recovered electrodes can be reused many times to fabricate new devices without loss of performance.
机译:许多薄膜光电子器件使用由掺杂锡的氧化铟(ITO)制成的电极,该电极可接受地导电,并且实际上是透明且无色的。遗憾的是,铟是一种罕见的元素,其价格持续上涨,因此从不再需要的设备中回收ITO电极变得越来越重要。先前的工作表明,在中性水中进行简单的超声处理可以将完整的ITO电极与典型设备中的其他组件分开,其中活性成分和ITO被聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)的离子缓冲层隔开(PEDOT:PSS)。水中的超声处理似乎是有效的,因为它有利于PEDOT:PSS的选择性渗透和溶解,从而释放出下面的ITO电极。但是,PEDOT:PSS在新兴设备中已通过使用各种金属氧化物作为空穴传输材料来代替。现在我们已经发现,这些新设备中的ITO电极可通过在稀碱水溶液中进行超声处理而回收。 ITO层的成分和形态仅发生很小的变化,回收的电极可以重复使用多次以制造新的器件而不会降低性能。

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