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首页> 外文期刊>AIP Advances >Engineering bright fluorescent nitrogen-vacancy (NV) nano-diamonds: Role of low-energy ion-irradiation parameters
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Engineering bright fluorescent nitrogen-vacancy (NV) nano-diamonds: Role of low-energy ion-irradiation parameters

机译:工程明亮的荧光氮空位(NV)纳米金刚石:低能离子辐照参数的作用

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摘要

Bright emission from fluorescent nanodiamonds (FNDs) is highly desirable for optical bio-imaging applications. Here we report about optimized ion-irradiation and heat treatment conditions for efficient creation of Nitrogen-vacancy (NV) centers in high pressure high temperature (HPHT) grown type Ib Nanodiamond samples irradiated in energy range (20-50 KeV) and at varying fluence (1012-1016 ions/cm2). Different low energy ion irradiations are not detrimental for the crystallinity of nanodiamonds as confirmed by X-ray diffraction and HRTEM. The concentration of defects near the outer surface (non-diamond carbon) has been increased for highest ion dose (50 KeV, 1016 ions/cm2) as compared to lower ion dose (50 KeV, 1013 ions/cm2). The relative emission intensity of characteristic Zero-phonon lines of NV°, NV- centers as compared to broad emission in the range 550-750 nm was monitored with varying NV creation conditions. Sample irradiated at 50 KeV and with fluence of 1013 ions/cm2 show maximum emission in the phonon side band (550-750 nm) with maxima at 680 nm. These optimized ion irradiation conditions leads to the fabrication of 12.5±0.8 ppm concentration of NV- centers in nanodiamonds. This is desirable for their use as biomarker. This work provides a recipe for creating bright nanodiamonds for optical imaging applications.
机译:荧光纳米金刚石(FND)发出的亮光非常适合光学生物成像应用。在这里,我们报告了优化的离子辐照和热处理条件,以在能量范围(20-50 KeV)和不同能量密度辐照的高压高温(HPHT)生长的Ib型纳米金刚石样品中高效创建氮空位(NV)中心。 (1012-1016离子/ cm2)。 X射线衍射和HRTEM证实,不同的低能离子辐照对纳米金刚石的结晶度无害。与最高离子剂量(50 KeV,1016离子/ cm2)相比,对于最高离子剂量(50 KeV,1016离子/ cm2),外表面附近的缺陷浓度(非金刚石碳)有所增加。用变化的NV产生条件监测了NV°,NV中心的特征零声子线与550-750nm范围内的宽发射相比的相对发射强度。以50 KeV和1013离子/ cm2的通量辐照的样品在声子边带(550-750 nm)中显示最大发射,最大值在680 nm。这些优化的离子辐照条件导致在纳米金刚石中制备浓度为12.5±0.8 ppm的NV-中心。对于它们用作生物标记物而言是理想的。这项工作提供了创建用于光学成像应用的明亮纳米金刚石的秘诀。

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