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Ultra-Bright 2D Assembled Copper Nanoclusters: Fluorescence Mechanism Exploration and LED Application

机译:超明亮的2D组装铜纳米能器:荧光机构勘探和LED应用

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摘要

Novel fluorescent nanomaterials have attracted enormous interests in the applications of illumination and display besides the traditional organic fluorophors. As potential alternatives, the environmental friendly fluorescent ultra-small organic-inorganic hybrid metal nanoclusters (size < 2 nm) is a series of powerful competitors used in illuminating field, on account of the non-poisonous, large amount of storage in earth, simple synthetic route, and relative low cost. The most important one, facile regulation of the fluorescence intensity and emission colors makes metal nanoclusters more attractive candidates for illumination application. Here, through ingeniously designing the structures of capping ligands, the highly bright copper nanoclusters are obtained, which further assemble into 2D ribbons with fluorescence quantum efficiency ascending to 36.4%. Last, the light emitting diodes with excellent performance are constructed, the emission wavelength locates at 650 nm in red region, which is suitable for plant illumination.
机译:除了传统的有机荧光汉之外,新型荧光纳米材料吸引了照明和显示的应用的巨大兴趣。作为潜在的替代品,环保型荧光超小型有机 - 无机杂交金属纳米团簇(尺寸<2nm)是一系列强大的竞争对手,用于照明场,是由于地球中的无毒,大量储存,简单合成路线,相对低成本。最重要的一个,荧光强度和发光颜色的容易调节使得金属纳米能器更具吸引力的照明应用候选者。这里,通过巧妙地设计封端配体的结构,获得高亮的铜纳米能器,其进一步组装成2D带,荧光量子效率上升至36.4%。最后,构造出具有优异性能的发光二极管,在红色区域的发光波长位于650nm,其适用于植物照明。

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