Department of Molecular Biotechnology and Health Sciences, University of Torino, Via Nizza 52, 10126 Torino, TO, Italy.
Center for Sustainable Future Technologies, Istituto Italiano di Tecnologia, Via Livorno 60, 10144 Torino, TO, Italy.
Biosensors (Basel). 2023 Jun 29;13(7):691. doi: 10.3390/bios13070691.
Negatively charged nitrogen-vacancy (NV) centers in diamond have unique magneto-optical properties, such as high fluorescence, single-photon generation, millisecond-long coherence times, and the ability to initialize and read the spin state using purely optical means. This makes NV centers a powerful sensing tool for a range of applications, including magnetometry, electrometry, and thermometry. Biocompatible NV-rich nanodiamonds find application in cellular microscopy, nanoscopy, and in vivo imaging. NV centers can also detect electron spins, paramagnetic agents, and nuclear spins. Techniques have been developed to hyperpolarize N, N, and C nuclear spins, which could open up new perspectives in NMR and MRI. However, defects on the diamond surface, such as hydrogen, vacancies, and trapping states, can reduce the stability of NV in favor of the neutral form (NV), which lacks the same properties. Laser irradiation can also lead to charge-state switching and a reduction in the number of NV centers. Efforts have been made to improve stability through diamond substrate doping, proper annealing and surface termination, laser irradiation, and electric or electrochemical tuning of the surface potential. This article discusses advances in the stabilization and enrichment of shallow NV ensembles, describing strategies for improving the quality of diamond devices for sensing and spin-polarization transfer applications. Selected applications in the field of biosensing are discussed in more depth.
钻石中的带负电荷的氮空位(NV)中心具有独特的磁光性质,例如高荧光、单光子产生、毫秒级长的相干时间,以及使用纯光学手段初始化和读取自旋态的能力。这使得 NV 中心成为一系列应用的强大传感工具,包括磁强计、电磁计和温度计。生物相容性的富含 NV 的纳米金刚石在细胞显微镜、纳米显微镜和体内成像中得到应用。NV 中心还可以检测电子自旋、顺磁剂和核自旋。已经开发出技术来超极化 N、N 和 C 核自旋,这可能为 NMR 和 MRI 开辟新的视角。然而,钻石表面的缺陷,如氢、空位和捕获态,可以降低 NV 的稳定性,有利于中性形式(NV),它缺乏相同的性质。激光辐射也会导致电荷态转换和 NV 中心数量减少。已经通过钻石衬底掺杂、适当的退火和表面终止、激光辐照以及表面势的电动或电化学调谐来努力提高稳定性。本文讨论了浅 NV 集合体的稳定和富集方面的进展,描述了用于传感和自旋极化转移应用的改善钻石器件质量的策略。更深入地讨论了生物传感领域的选定应用。