研究者开发了一种紫外线辅助庄置,能够在目前平面显示器使用的工业标准电极材料氧化氧化铟锡(indium tin oxide ITO)的表面,增加一层一个原子厚度的氯薄板,建立一个提供有效电传输的媒介。
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Indium Tin Oxide-ITO 氧化铟锡
indium-tin-oxide ito 氧化铟锡
indium-tin oxide ito 掺锡氧化铟
indium-tin oxide ito films 氧化铟锡薄膜
ITO Indium Tin Oxide 氧化铟锡
indium tin oxide film ito 氧化铟锡薄膜
Conductors of electricity on solar panels ideally must be transparent and highly conductive. One solution currently used is indium tin oxide (ITO); however, ITO is very expensive.
对太阳能电池板而言,电池面板内部的导体元件必须采用既透明,电导率又高的材料进行制作,目前用来制作这种导体元件的材料主要是铟和锡元素的氧化物 (ITO),不过ITO材料非常昂贵。
The resistivity and surface roughness of Indium tin oxide (ITO) films will affect the light-emitting efficiency and lifetime of the organic light-emitting diodes (OLED).
氧化铟锡(ito)膜的电阻率及表面粗糙度将影响有机电致发光器件(OLED)的发光效率及其使用寿命。
Most current fabrication techniques in optoelectronics use carriers containing indium tin oxide (ITO) to achieve highly efficient devices. However, this material is expensive and unflexible.
为了提高设备效率,当前主流光电子制备技术使用含有铟锡氧化物(ITO)的载体,然而这种材料价格昂贵并且不具有柔性。
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