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用于单分子手控扫描探针显微镜操作的虚拟现实视觉反馈

Virtual reality visual feedback for hand-controlled scanning probe microscopy manipulation of single molecules.

作者信息

Leinen Philipp, Green Matthew F B, Esat Taner, Wagner Christian, Tautz F Stefan, Temirov Ruslan

机构信息

Peter Grünberg Institut (PGI-3), Forschungszentrum Jülich, 52425 Jülich, Germany ; Jülich Aachen Research Alliance (JARA)-Fundamentals of Future Information Technology, 52425 Jülich, Germany.

出版信息

Beilstein J Nanotechnol. 2015 Nov 16;6:2148-53. doi: 10.3762/bjnano.6.220. eCollection 2015.

Abstract

Controlled manipulation of single molecules is an important step towards the fabrication of single molecule devices and nanoscale molecular machines. Currently, scanning probe microscopy (SPM) is the only technique that facilitates direct imaging and manipulations of nanometer-sized molecular compounds on surfaces. The technique of hand-controlled manipulation (HCM) introduced recently in Beilstein J. Nanotechnol. 2014, 5, 1926-1932 simplifies the identification of successful manipulation protocols in situations when the interaction pattern of the manipulated molecule with its environment is not fully known. Here we present a further technical development that substantially improves the effectiveness of HCM. By adding Oculus Rift virtual reality goggles to our HCM set-up we provide the experimentalist with 3D visual feedback that displays the currently executed trajectory and the position of the SPM tip during manipulation in real time, while simultaneously plotting the experimentally measured frequency shift (Δf) of the non-contact atomic force microscope (NC-AFM) tuning fork sensor as well as the magnitude of the electric current (I) flowing between the tip and the surface. The advantages of the set-up are demonstrated by applying it to the model problem of the extraction of an individual PTCDA molecule from its hydrogen-bonded monolayer grown on Ag(111) surface.

摘要

对单分子进行可控操纵是迈向制造单分子器件和纳米级分子机器的重要一步。目前,扫描探针显微镜(SPM)是唯一能够实现对表面纳米尺寸分子化合物进行直接成像和操纵的技术。最近在《Beilstein 纳米技术杂志》2014年第5期第1926 - 1932页中介绍的手动控制操纵(HCM)技术,在被操纵分子与其环境的相互作用模式尚未完全知晓的情况下,简化了成功操纵方案的识别过程。在此,我们展示了一项进一步的技术发展,它显著提高了HCM的有效性。通过在我们的HCM装置中添加Oculus Rift虚拟现实护目镜,我们为实验人员提供了3D视觉反馈,实时显示当前执行的轨迹以及操纵过程中SPM探针的位置,同时绘制非接触原子力显微镜(NC - AFM)音叉传感器的实验测量频移(Δf)以及探针与表面之间流动的电流大小(I)。通过将其应用于从生长在Ag(111)表面的氢键单层中提取单个PTCDA分子的模型问题,展示了该装置的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1820/4660913/b4c851503ac0/Beilstein_J_Nanotechnol-06-2148-g002.jpg

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