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High-yield preparation of blue-emitting colloidal Si nanocrystals by selective laser ablation of porous silicon in liquid

机译:液体中多孔硅的选择性激光烧蚀高产制备发蓝光胶态硅纳米晶

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摘要

We demonstrate the higher-yield (one order of magnitude) preparation of blue-emitting colloidal Si nanocrystals with a diameter range of 1-3 nm by selective laser ablation of porous Si powder in an organic solution, compared with the ablation of bulk Si powder. This increase in yield is the result of the lower thermal conductivity and the larger surface area of porous Si. The prepared colloidal Si nanocrystal exhibits size-dependent, higher-lying bandgap energies and large radiative decay rates as a result of the quantum confinement effect. Reversible luminescence color change from blue to yellow and vice versa in the colloidal Si nanocrystal film is also observed, and this is attributed to the non-radiative inter-crystal energy transfer.
机译:我们证明了通过选择性激光烧蚀有机溶液中的多孔硅粉,与烧蚀散装硅粉相比,可以高产率(一个数量级)制备直径范围为1-3 nm的发蓝光的胶态硅纳米晶体。 。产率的提高是多孔硅的较低的热导率和较大的表面积的结果。所制备的胶体Si纳米晶体由于量子限制效应而表现出尺寸依赖性的,高位的带隙能量和大的辐射衰减率。在胶态Si纳米晶体膜中还观察到可逆的发光颜色从蓝色变为黄色,反之亦然,这归因于非辐射晶间能量转移。

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