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Organic light-emitting diodes formed by soft contact lamination

机译:通过软接触层压形成的有机发光二极管

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摘要

Although tremendous progress has been made in organic light-emitting diodes (OLEDs), with few exceptions they are fabricated in the standard way by sequentially depositing active layers and electrodes onto a substrate. Here we describe a different approach for building OLEDs, which is based on physical lamination of thin metal electrodes supported by an elastomeric layer against an electroluminescent organic. This method relies only on van der Waals interactions to establish spatially homogeneous, intimate contacts between the electrodes and the organic. We find that devices fabricated in this manner have better performance than those constructed with standard processing techniques. The lamination approach avoids forms of disruption that can be introduced at the electrode/organic interface by metal evaporation and has a reduced sensitivity to pinhole or partial pinhole defects. In addition, because this form of “soft” contact lamination is intrinsically compatible with the techniques of soft lithography, it is easy to build patterned OLEDs with feature sizes into the nanometer regime. This method provides a new route to OLEDs for applications ranging from high performance displays to storage and lithography systems that rely on subwavelength light sources.
机译:尽管有机发光二极管(OLED)取得了巨大进步,但几乎没有例外,它们是通过在基板上依次沉积有源层和电极以标准方式制造的。在这里,我们描述了一种用于构建OLED的不同方法,该方法基于由弹性体层支撑的薄金属电极相对于电致发光有机物的物理层压。该方法仅依靠范德华相互作用来在电极和有机物之间建立空间均匀的紧密接触。我们发现,以这种方式制造的设备比采用标准加工技术制造的设备具有更好的性能。层压方法避免了由于金属蒸发而可能在电极/有机界面处引入的破坏形式,并且降低了对针孔或部分针孔缺陷的敏感性。另外,由于这种形式的“软”接触层压与软光刻技术本质上兼容,因此很容易将具有特征尺寸的图案化OLED制成纳米级。这种方法为从高性能显示器到依赖亚波长光源的存储和光刻系统等应用提供了一条通往OLED的新途径。

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