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Nitrogen and Luminescent Nitrogen-Vacancy Defects in Detonation Nanodiamond

机译:爆轰纳米金刚石中的氮和发光氮空位缺陷

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摘要

An efficient method to investigate the microstructure and spatial distribution of nitrogen and nitrogen-vacancy (N-V) defects in detonation nanodiamond (DND) with primary particle sizes ranging from approximately 3 to 50 nm is presented. Detailed analysis reveals atomic nitrogen concentrations as high as 3 at% in 50% of diamond primary particles with sizes smaller than 6 nm. A non-uniform distribution of nitrogen within larger primary DND particles is also presented, indicating a preference for location within the defective central part or at twin boundaries. A photoluminescence (PL) spectrum with well-pronounced zero-phonon lines related to the N-V centers is demonstrated for the first time for electron-irradiated and annealed DND particles at continuous laser excitation. Combined Raman and PL analysis of DND crystallites dispersed on a Si substrate leads to the conclusion that the observed N-V luminescence originates from primary particles with sizes exceeding 30 nm. These findings demonstrate that by manipulation of the sizeitrogen content in DND there are prospects for mass production of nanodiamond photoemitters based on bright and stable luminescence from nitrogen-related defects.
机译:提出了一种有效的方法,用于研究一次粒径为3至50 nm的爆轰纳米金刚石(DND)中氮和氮空位(N-V)缺陷的微观结构和空间分布。详细分析显示,在尺寸小于6 nm的50%金刚石初级颗粒中,原子氮浓度高达3 at%。还提出了较大的初级DND颗粒中氮的不均匀分布,表明偏爱于缺陷中央部分或孪晶边界处的位置。首次展示了与N-V中心相关的具有清晰发音的零声子线的光致发光(PL)光谱,该光谱用于连续激光激发下电子辐照和退火的DND粒子。对分散在Si衬底上的DND晶体的拉曼光谱和PL组合分析得出的结论是,观察到的N-V发光源自尺寸超过30 nm的一次粒子。这些发现表明,通过控制DND中的尺寸/氮含量,基于与氮相关的缺陷的明亮且稳定的发光,可以大规模生产纳米金刚石光发射体。

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