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Mapping the electrostatic force field of single molecules from high-resolution scanning probe images

机译:从高分辨率扫描探针图像绘制单分子的静电力场

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How electronic charge is distributed over a molecule determines to a large extent its chemical properties. Here, we demonstrate how the electrostatic force field, originating from the inhomogeneous charge distribution in a molecule, can be measured with submolecular resolution. We exploit the fact that distortions typically observed in high-resolution atomic force microscopy images are for a significant part caused by the electrostatic force acting between charges of the tip and the molecule of interest. By finding a geometrical transformation between two high-resolution AFM images acquired with two different tips, the electrostatic force field or potential over individual molecules and self-assemblies thereof can be reconstructed with submolecular resolution.
机译:电荷在分子上的分布方式在很大程度上决定了其化学性质。在这里,我们演示了如何用亚分子分辨率测量源自分子中不均匀电荷分布的静电力场。我们利用这样一个事实,即通常在高分辨率原子力显微镜图像中观察到的畸变在很大程度上是由作用在尖端电荷和目标分子之间的静电力引起的。通过找到用两个不同尖端采集的两个高分辨率AFM图像之间的几何变换,可以以亚分子分辨率重建单个分子上的静电力场或电势及其自组装。

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