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纳米级核磁共振成像与化学对比。

Nanoscale nuclear magnetic imaging with chemical contrast.

机构信息

3. Physikalisches Institut, Universität Stuttgart, Pfaffenwaldring 57, 70569 Stuttgart, Germany.

1] 3. Physikalisches Institut, Universität Stuttgart, Pfaffenwaldring 57, 70569 Stuttgart, Germany [2] Max Planck Institute for Solid State Research, Heisenbergstraße 1, 70569 Stuttgart, Germany.

出版信息

Nat Nanotechnol. 2015 Feb;10(2):125-8. doi: 10.1038/nnano.2014.299. Epub 2015 Jan 5.

Abstract

Scanning probe microscopy is one of the most versatile windows into the nanoworld, providing imaging access to a variety of electronic, dielectric, magnetic and topographic sample properties, depending on the probe used. Here, we demonstrate a scanning probe imaging method that extends the range of accessible quantities to label-free imaging of chemical species while operating on arbitrary samples--including insulating materials--under ambient conditions. Moreover, its sensitivity extends below the surface of a sample, allowing for imaging of subsurface features. We achieve these results by recording NMR signals from a sample surface with a recently introduced scanning probe, a single nitrogen-vacancy centre in diamond. We demonstrate NMR imaging with 10 nm resolution and achieve chemically specific contrast by separating fluorine from hydrogen-rich regions. Our result opens the door to scanning probe imaging of the chemical composition and molecular structure of arbitrary samples. A method with these abilities will find widespread application in materials science, even on biological specimens down to the level of single macromolecules.

摘要

扫描探针显微镜是观察纳米世界的最通用窗口之一,根据所使用的探针,提供对各种电子、介电、磁和形貌样品特性的成像访问。在这里,我们展示了一种扫描探针成像方法,该方法将可访问的数量范围扩展到在环境条件下对任意样品(包括绝缘材料)进行无标记化学物种成像。此外,它的灵敏度延伸到样品表面以下,允许对亚表面特征进行成像。我们通过使用最近引入的扫描探针——金刚石中的单个氮空位中心——从样品表面记录 NMR 信号来实现这些结果。我们展示了具有 10nm 分辨率的 NMR 成像,并通过将氟与富含氢的区域分离来实现化学特异性对比。我们的结果为任意样品的化学成分和分子结构的扫描探针成像开辟了道路。这种具有这些能力的方法将在材料科学中得到广泛应用,甚至可以在生物样本中达到单个大分子的水平。

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