首页> 外文期刊>Scientific reports. >Enrichment of ODMR-active nitrogen-vacancy centres in five-nanometre-sized detonation-synthesized nanodiamonds: Nanoprobes for temperature, angle and position
【24h】

Enrichment of ODMR-active nitrogen-vacancy centres in five-nanometre-sized detonation-synthesized nanodiamonds: Nanoprobes for temperature, angle and position

机译:在五纳米尺寸的爆炸合成纳米胺中富集ODMR-活性氮空位中心:温度,角度和位置的纳米素

获取原文
           

摘要

The development of sensors to estimate physical properties, and their temporal and spatial variation, has been a central driving force in scientific breakthroughs. In recent years, nanosensors based on quantum measurements, such as nitrogen-vacancy centres (NVCs) in nanodiamonds, have been attracting much attention as ultrastable, sensitive, accurate and versatile physical sensors for quantitative cellular measurements. However, the nanodiamonds currently available for use as sensors have diameters of several tens of nanometres, much larger than the usual size of a protein. Therefore, their actual applications remain limited. Here we show that NVCs in an aggregation of 5-nm-sized detonation-synthesized nanodiamond treated by Krüger’s surface reduction (termed DND-OH) retains the same characteristics as observed in larger diamonds. We show that the negative charge at the NVC are stabilized, have a relatively long T2 spin relaxation time of up to 4?μs, and are applicable to thermosensing, one-degree orientation determination and nanometric super-resolution imaging. Our results clearly demonstrate the significant potential of DND-OH as a physical sensor. Thus, DND-OH will raise new possibilities for spatiotemporal monitoring of live cells and dynamic biomolecules in individual cells at single-molecule resolution.
机译:传感器的开发来估计物理性质,以及它们的时间和空间变化,是科学突破的中央驱动力。近年来,基于量子测量的纳米传感器,例如纳米金刚胺的氮空缺中心(NVC),这一直吸引了用于定量细胞测量的无稳态,灵敏,准确和多功能物理传感器的巨大关注。然而,目前可用作传感器的纳米金刚石具有几十纳米的直径,远大于蛋白质的通常大小。因此,他们的实际应用仍然有限。在这里,我们表明,通过KRüger的表面还原(称为DND-OH)处理的5-NM爆炸合成的纳米胺的聚集中的NVC保持与较大钻石中观察到的相同特性。我们表明,NVC的负电荷稳定,具有相对长的T2旋转弛豫时间,可达4ΩΩΩ·μs,并且适用于热腐蚀,一度取向测定和纳米超分辨率成像。我们的结果清楚地证明了DND-OH作为物理传感器的显着潜力。因此,DND-OH将在单分子分辨率下提高单分子分辨率中单独细胞中活细胞和动态生物分子的新可能性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号