Leibniz-Institute of Surface Engineering (IOM), Permoserstr. 15, D-04318 Leipzig, Germany.
Nanoscale. 2019 Jan 23;11(4):1770-1783. doi: 10.1039/c8nr07828a.
Control over the formation and fluorescence properties of nitrogen vacancy (NV) centers in nanodiamonds (NDs) is an important factor for their use in medical and sensor applications. However, reports providing a deep understanding of the potential factors influencing these properties are rare and focus only on a few influencing factors. The current contribution targets this issue and we report a comprehensive study of the fluorescence properties of NVs in nanodiamonds as a function of electron irradiation fluence and surface termination. Here we show that process parameters such as defect center interactions, in particular, different nitrogen defects and radiation induced lattice defects, as well as surface functionalities have a strong influence on the fluorescence intensity, fluorescence lifetime and the charge state ratio of the NV centers. By employing a time-correlated single photon counting approach we also established a method for fast macroscopic monitoring of the fluorescence properties of ND samples. We found that the fluorescence properties of NV centers may be controlled or even tuned depending upon the radiation treatment, annealing, and surface termination.
控制氮空位(NV)中心在纳米金刚石(NDs)中的形成和荧光性质是将其应用于医疗和传感器应用的重要因素。然而,提供对影响这些性质的潜在因素的深刻理解的报告很少,并且仅关注少数几个影响因素。本研究针对这一问题,全面研究了氮空位在纳米金刚石中的荧光性质作为电子辐照通量和表面终止的函数。研究表明,缺陷中心相互作用等工艺参数,特别是不同的氮缺陷和辐射诱导的晶格缺陷以及表面官能团对 NV 中心的荧光强度、荧光寿命和电荷态比有强烈的影响。通过采用时间相关单光子计数方法,我们还建立了一种用于快速宏观监测 ND 样品荧光性质的方法。研究发现,NV 中心的荧光性质可以根据辐射处理、退火和表面终止进行控制甚至调谐。