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Enhanced SiV photoluminescence by oxidation-induced nano-structures on diamond particle surfaces

机译:增强的SiV的光致发光在钻石oxidation-induced纳米结构粒子的表面

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摘要

We successfully constructed nanostructures on the surface of diamond particles by oxidation, which drastically enhanced their silicon-vacancy (SiV) photoluminescence (PL) intensity. The {100} plane of the diamond crystal initially had a smooth surface and strong anti-oxidation ability, which converted to a nano-pyramid structure with the sides resembling a {111} crystal plane orientation after oxidation. The {111} plane originally presented vertically layered or scale-like structures, but exhibited irregular nanoporous structures with some ridges perpendicular to the {111} plane in the edge area after oxidation. Since the crystal orientation of these nano-structures matches the 111 aligned split-vacancy structure of the SiV center, the collection efficiency of SiV luminescence increased, such that the SiV emission intensity increased by 27-fold and 4-fold for the nano-pyramid and the irregular nano-porous structure, respectively. Oxidation also significantly improved the crystal quality of diamond, such that the lattice stress around the SiV color center reduced, narrowing the linewidth of the SiV PL peak to nearly 3 nm. This study provides a feasible way to optimize SiV photoluminescent properties by building nanostructures on the surface of diamond particles.
机译:我们成功构建纳米结构钻石颗粒的表面氧化,大大提高了silicon-vacancy (SiV)光致发光(PL)强度。最初的钻石水晶光滑表面和较强的抗氧化能力nano-pyramid结构的转换方面类似于{111}晶面氧化后的方向。最初提出的垂直分层或磷片状结构,但表现出不规则的纳米多孔结构的山脊垂直于边缘的{111}面区域后氧化。这些纳米结构匹配& split-vacancy猴免疫缺陷病毒的结构保持一致中心,SiV的收集效率发光的增加,这样的SiV排放强度增长了27倍4倍nano-pyramid和不规则的分别nano-porous结构。也显著提高晶体质量的钻石,这样周围的晶格应力SiV颜色中心减少,缩小线宽的SiV PL峰近3海里。研究提供了一种可行的方法来优化SiV发光性质的建筑纳米结构表面上的钻石粒子。

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