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Ultra-low-threshold field emission from conjugated polymers

机译:共轭聚合物的超低阈值场发射

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摘要

Field-emission displays contain materials that emit electrons when charged to a low (negative) potential; the electrons excite light emission from phosphor screens. These devices have the potential to provide flat-panel visual displays with good picture quality at low power consumption and low cost. Field-emission devices at present use arrays of microfabricated tips as the emitting cathodes, but a potentially cheaper and simpler alternative is to use a thin-film cathode. This requires the identification of materials that will emit an appreciable electron current at low applied fields. Nitrogen-doped, chemical-vapour-deposited diamond films and amorphous carbon films have been explored for this purpose. The low electron affinity, wide bandgap and excellent transport properties of some conducting organic polymers suggest that they might also provide good cathode materials. Here we demonstrate that this is so, reporting field emission from thin films of regioregular poly(3-octylthiophene) deposited on n-doped silicon, with indium tin oxide as the anode. The threshold fields that we measure for electron emission from these films are the lowest yet reported for any carbon-based material.
机译:场发射显示器包含的材料在被充电至低(负)电位时会发射电子。电子激发荧光屏发出的光。这些设备具有以低功耗和低成本提供具有良好图像质量的平板视觉显示器的潜力。当前的场致发射装置使用微细尖端的阵列作为发射阴极,但是可能更便宜和更简单的替代方法是使用薄膜阴极。这就要求确定在低外加电场下会发射出可观电子电流的材料。为此目的,已经探索了氮掺杂,化学气相沉积的金刚石膜和无定形碳膜。一些导电有机聚合物的低电子亲和力,宽禁带宽度和出色的传输性能表明,它们也可能提供良好的阴极材料。在这里,我们证明了这一点,即报告了以铟锡氧化物为阳极,沉积在n掺杂硅上的区域规则聚(3-辛基噻吩)薄膜的场发射。对于所有基于碳的材料,我们测量的用于这些膜的电子发射的阈值场是最低的。

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