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Influence of ions on two-dimensional and three-dimensional atomic force microscopy at fluorite-water interfaces

机译:离子对萤石 - 水界面二维和三维原子力显微镜的影响

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摘要

Recent advancement in liquid-environment atomic force microscopy (AFM) has enabled us to visualize three-dimensional (3D) hydration structures as well as two-dimensional (2D) surface structures with subnanometer-scale resolution at solid-water interfaces. However, the influence of ions present in solution on the 2D-and 3D-AFM measurements has not been well understood. In this study, we perform atomic-scale 2D-and 3D-AFM measurements at fluorite-water interfaces in pure water and a supersaturated solution of fluorite. The images obtained in these two environments are compared to understand the influence of the ions in solution on these measurements. In the 2D images, we found clear difference in the nanoscale structures but no significant difference in the atomic-scale contrasts. However, the 3D force images show clear difference in the subnanometer-scale contrasts. The force contrasts measured in pure water largely agree with those expected from the molecular dynamics simulation and the solvent tip approximation model. In the supersaturated solution, an additional force peak is observed over the negatively charged fluorine ion site. This location suggests that the observed force peak may originate from cations adsorbed on the fluorite surface. These results demonstrate that the ions can significantly alter the subnanometer-scale force contrasts in the 3D-AFM images.
机译:最近在液体环境原子力显微镜(AFM)的进步使我们能够在固水接口处使三维(3D)水合结构以及二维(2D)表面结构具有亚料表级分辨率。然而,在2D和3D-AFM测量中溶液中存在的离子的影响尚未得到很好的理解。在这项研究中,我们在纯水中的萤石 - 水界面和萤石溶液的过饱和溶液中对萤石 - 水界面进行原子级2D和3D-AFM测量。将在这两个环境中获得的图像进行比较,以了解离子对这些测量的溶液中的影响。在2D图像中,我们发现纳米结构的明显差异,但原子尺度对比度没有显着差异。然而,3D力图像显示亚域级对比度的明显差异。在纯水中测量的力对比度在很大程度上同意来自分子动力学模拟和溶剂尖端近似模型的预期。在过饱和溶液中,在带负电荷的氟离子位点上观察到额外的力峰。该位置表明观察到的力峰可以源自吸附在萤石表面上的阳离子。这些结果表明,离子可以显着改变3D-AFM图像中的亚尺度力。

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