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Improving surface and defect center chemistry of fluorescent nanodiamonds for imaging purposes—a review

机译:改进用于成像目的的荧光纳米金刚石的表面和缺陷中心化学性质—综述

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摘要

Diamonds are widely used for jewelry owing to their superior optical properties accounting for their fascinating beauty. Beyond the sparkle, diamond is highly investigated in materials science for its remarkable properties. Recently, fluorescent defects in diamond, particularly the negatively charged nitrogen-vacancy (NV-) center, have gained much attention: The NV- center emits stable, nonbleaching fluorescence, and thus could be utilized in biolabeling, as a light source, or as a Förster resonance energy transfer donor. Even more remarkable are its spin properties: with the fluorescence intensity of the NV- center reacting to the presence of small magnetic fields, it can be utilized as a sensor for magnetic fields as small as the field of a single electron spin. However, a reproducible defect and surface and defect chemistry are crucial to all applications. In this article we review methods for using nanodiamonds for different imaging purposes. The article covers (1) dispersion of particles, (2) surface cleaning, (3) particle size selection and reduction, (4) defect properties, and (5) functionalization and attachment to nanostructures, e.g., scanning probe microscopy tips.>Graphical AbstractWe review how diamond surface and defect chemistry can be optimized for different (bio) applications
机译:钻石因其卓越的光学性能而引人入胜,因此被广泛用于珠宝。除了闪闪发光,钻石还因其卓越的性能而在材料科学领域受到高度研究。最近,钻石中的荧光缺陷,尤其是带负电荷的氮空位(NV -)中心引起了很多关注:NV -中心发出稳定的,不漂白的荧光,并且因此可用于生物标记,用作光源或用作Förster共振能量转移供体。它的自旋特性更加引人注目:随着NV -中心的荧光强度与小磁场的存在发生反应,它可以用作磁场的传感器,其磁场强度可以小于单电子自旋。但是,可再现的缺陷以及表面和缺陷化学性质对于所有应用都是至关重要的。在本文中,我们回顾了将纳米金刚石用于不同成像目的的方法。该文章涵盖(1)颗粒分散,(2)表面清洁,(3)粒度选择和降低,(4)缺陷性质以及(5)功能化和与纳米结构的连接,例如扫描探针显微镜头。 --fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> >图形摘要<!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->我们回顾了如何针对不同的(生物)应用优化钻石表面和缺陷化学

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