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Super-resolution surface mapping using the trajectories of molecular probes

机译:使用分子探针的轨迹进行超分辨率表面映射

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The surface characterization of 'soft' materials presents a significant scientific challenge, particularly under 'wet' in situ conditions where a wide variety of non-covalent interactions may be relevant. Here we introduce a new chemical imaging method, MAPT (mapping using accumulated probe trajectories) that generates images of surface interactions by distributing different aspects of molecular probe trajectories into distinct locations and then combining many trajectories to generate spatial maps. The maps are super-resolution in nature, because they are accumulated from highly localized single-molecule observations. Unlike other super-resolution techniques, which report only photon or point counts, our analysis generates spatial maps of physical quantities (adsorption rate, desorption probability, local surface diffusion coefficient, surface coverage/occupancy) that are directly associated with the molecular interactions between the probe molecule and the surface. We demonstrate the feasibility of this characterization using a surface patterned with various degrees of hydrophobicity.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:“软”材料的表面表征提出了重大的科学挑战,尤其是在“湿”原位条件下,其中可能存在多种非共价相互作用。在这里,我们介绍了一种新的化学成像方法,MAPT(使用累积的探针轨迹进行映射),该方法通过将分子探针轨迹的不同方面分布到不同的位置,然后组合许多轨迹以生成空间图来生成表面相互作用的图像。这些地图本质上是超分辨率的,因为它们是从高度局部化的单分子观测中积累的。与仅报告光子或点数的其他超分辨率技术不同,我们的分析会生成物理量(吸附率,解吸概率,局部表面扩散系数,表面覆盖率/占有率)的空间图,这些空间图与分子之间的分子相互作用直接相关。探针分子和表面。我们证明了使用具有不同程度疏水性的表面进行图案表征的可行性。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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