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A general one-pot strategy for the synthesis of high-performance transparent-conducting-oxide nanocrystal inks for all-solution-processed devices

机译:用于全溶液处理设备的高性能透明导电氧化物纳米晶体油墨合成的通用一锅法

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摘要

For all-solution-processed (ASP) devices, transparent conducting oxide (TCO) nanocrystal (NC) inks are anticipated as the next-generation electrodes to replace both those synthesized by sputtering techniques and those consisting of rare metals, but a universal and one-pot method to prepare these inks is still lacking. A universal one-pot strategy is now described; through simply heating a mixture of metal-organic precursors a wide range of TCO NC inks, which can be assembled into high-performance electrodes for use in ASP optoelectronics, were synthesized. This method can be used for various oxide NC inks with yields as high as 10 g. The formed NCs are of high crystallinity, uniform morphology, monodispersity, and high ink stability and feature effective doping. Therefore, the inks can be readily assembled into films with a surface roughness of 1.6 nm. Typically, a sheet resistance of 110 Ω sq-1 can be achieved with a transmittance of 88%, which is the best performance for TCO NC ink-based electrodes described to date. These electrodes can thus drive a polymer light-emitting diode (PLED) with a luminance of 2200 cdm-2 at 100 mA cm-2.
机译:对于全溶液处理(ASP)器件,透明导电氧化物(TCO)纳米晶体(NC)墨水有望作为下一代电极,以取代通过溅射技术合成的电极和由稀有金属组成的电极,但是通用电极仍缺乏制备这些油墨的锅法。现在描述一种通用的一锅法;通过简单地加热金属有机前体的混合物,可以合成多种TCO NC油墨,这些油墨可以组装成用于ASP光电的高性能电极。该方法可用于产量高达10 g的各种氧化物NC油墨。形成的NC具有高结晶度,均匀的形貌,单分散性和高油墨稳定性,并具有有效的掺杂特性。因此,可以容易地将油墨组装成表面粗糙度为1.6nm的膜。通常,可以以88%的透射率实现110Ωsq-1的薄层电阻,这是迄今为止所描述的TCO NC墨水基电极的最佳性能。这些电极因此可以驱动聚合物发光二极管(PLED),其在100 mA cm-2时的亮度为2200 cdm-2。

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