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Thermodynamic-driven polychromatic quantum dot patterning for light-emitting diodes beyond eye-limiting resolution

机译:热力驱动多色量子点图案,用于发光二极管超出可笑分辨率的发光二极管

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The next-generation wearable near-eye displays inevitably require extremely high pixel density due to significant decrease in the viewing distance. For such denser and smaller pixel arrays, the emissive material must exhibit wider colour gamut so that each of the vast pixels maintains the colour accuracy. Electroluminescent quantum dot light-emitting diodes are promising candidates for such application owing to their highly saturated colour gamuts and other excellent optoelectronic properties. However, previously reported quantum dot patterning technologies have limitations in demonstrating full-colour pixel arrays with sub-micron feature size, high fidelity, and high post-patterning device performance. Here, we show thermodynamic-driven immersion transfer-printing, which enables patterning and printing of quantum dot arrays in omni-resolution scale; quantum dot arrays from single-particle resolution to the entire film can be fabricated on diverse surfaces. Red-green-blue quantum dot arrays with unprecedented resolutions up to 368 pixels per degree is demonstrated.
机译:由于观察距离显着降低,下一代可穿戴近似眼显示器不可避免地需要极高的像素密度。对于这种密度和较小的像素阵列,发光材料必须表现出更宽的色域,使得每个巨大的像素保持颜色精度。由于其高度饱和的色域和其他优异的光电性能,电致发光量子点发光二极管是对这种应用的承诺候选者。然而,先前报道的量子点图案化技术具有局限性地说明具有子微米特征尺寸,高保真度和高图案化设备性能的全彩像素阵列。在这里,我们展示了热力学驱动的浸入式转印 - 印刷,这使得全部分辨率尺度的量子点阵列进行图案化和印刷;从单颗粒分辨率到整个胶片的量子点阵列可以在不同的表面上制造。展示了具有前所未有的分辨率的红绿蓝量子点阵列,每度高达368像素。

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