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METHOD OF PRODUCING DIAMOND STRUCTURE WITH NITROGEN-VACANCY DEFECTS

机译:产生氮空位缺陷的金刚石结构的方法

摘要

FIELD: chemistry.;SUBSTANCE: invention can be used in magnetometry, quantum optics, biomedicine and information technology. Cleaned detonation nanodiamonds are sintered in a chamber at pressure 5-7 GPa and temperature 750-1200°C for a period time ranging from several seconds to several minutes. The obtained powder of diamond aggregates is exposed to laser radiation with wavelength smaller than 637 nm and diamond aggregates with high concentration of nitrogen-vacancy (NV) defects are selected based on the bright characteristic luminescence in the red spectral region. In the obtained diamond structure, about 1% of carbon atoms are substituted with NV defects and about 1% of carbon atoms are substituted with single nitrogen donors.;EFFECT: aligned blocks of nanodiamonds obtained using the invention have quasi-crystalline properties, which makes investigation and identification thereof easier; the aggregates can also be ground to obtain diamond nanocrystals having NV defects.;2 cl, 5 dwg
机译:领域:化学。物质:本发明可用于磁力计,量子光学,生物医学和信息技术。将清洁的爆轰纳米金刚石在压力为5-7 GPa,温度为750-1200°C的腔室内烧结数秒至数分钟的时间。将获得的金刚石骨料粉末暴露于波长小于637 nm的激光辐射下,并根据红色光谱区域中的明亮特征发光来选择具有高浓度氮空位(NV)缺陷的金刚石骨料。在获得的金刚石结构中,约1%的碳原子被NV缺陷取代,约1%的碳原子被单个氮供体取代。效果:使用本发明获得的纳米金刚石排列的嵌段具有准晶体性质,这使得调查和识别更加容易;还可将聚集体研磨以获得具有NV缺陷的金刚石纳米晶体。; 2 cl,5 dwg

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