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Luminescence color control and quantum-efficiency enhancement of colloidal Si nanocrystals by pulsed laser irradiation in liquid

机译:发光颜色控制和量子效率增强的胶体硅纳米晶体脉冲激光辐照的液体

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摘要

We demonstrate the emission color change of white-emitting chlorine-terminated silicon nanocrystals (Cl: Si-ncs) to blue-emitting carbon-terminated silicon nanocrystals (C: Si-ncs), together with the enhancement of the luminescence quantum efficiency from 7% to 13%, by post-laser ablation in 1-octene. Such changes of the PL properties are caused by the size reduction of Si-nc and efficient surface passivation by hydrocarbons, resulting from a high reactivity of 1-octene in the laser-ablation and subsequent nanoparticle-formation processes. Furthermore, the second post-laser irradiation of the C: Si-ncs in trichloroethylene reversibly results in the formation of the Cl: Si-ncs. The preparation yield of C: Si-ncs via the post-laser ablation of Cl: Si-ncs is higher than that of C: Si-ncs directly prepared only by the laser ablation of PSi in 1-octene. This high preparation yield is due to the high laser-ablation efficiency in trichloroethylene compared with 1-octene, which is attributed to the low heat loss of the solvent in the laser-ablation process.
机译:我们将演示发射颜色的变化white-emitting chlorine-terminated硅纳米晶体(Cl: Si-ncs) blue-emittingcarbon-terminated硅纳米晶体(C:Si-ncs),一起提高发光量子效率从7%提高到13%,1-octene post-laser消融。PL的属性造成的大小减少Si-nc和高效的表面钝化的碳氢化合物,造成的高反应活性的1-octene激光烧蚀和随后的nanoparticle-formation流程。此外,第二post-laser辐照C:在三氯乙烯Si-ncs可逆结果形成的Cl: Si-ncs。制备的C:通过post-laser Si-ncs消融的Cl: Si-ncs高于C:只有激光Si-ncs直接准备消融1-octene PSi。准备率是由于高激光烧蚀效率三氯乙烯与1-octene相比,这是归因于较低的热损失的溶剂激光烧蚀过程。

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