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On-surface synthesis of a two-dimensional porous coordination network: Unraveling adsorbate interactions

机译:二维多孔配位网络的表面合成:揭示吸附物相互作用

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摘要

We present a detailed experimental and theoretical characterization of the adsorption of the perylene derivative 4,9-diaminoperylene-quinone-3,10-diimine (DPDI) on Cu(111) and compare it to its threefold dehydrogenated derivative 3deh-DPDI, which forms in a surface reaction upon annealing. While DPDI itself does not give rise to long-range ordered structures due to lack of appropriate functional groups, 3deh-DPDI acts as an exoligand in a Cu-coordinated honeycomb network on Cu(111). The main focus of this work lies on the analysis of intermolecular and molecule-substrate interactions by combining results from scanning tunneling microscopy, x-ray photoelectron spectroscopy, x-ray standing wave measurements, and density functional theory. We show, in particular, that the interactions between metal atoms and organic ligands effectively weaken the molecule-surface interactions for 3deh-DPDI leading to an increase in molecule-substrate distances compared to the DPDI precursor. Our experimental findings also shed light on the applicability of current theories, namely van der Waals corrections to density functional theory.
机译:我们提供了详细的实验和理论表征ization(4,9-diaminoperylene-quinone-3,10-diimine(DPDI))在Cu(111)上的吸附并将其与其三倍脱氢衍生物3deh-DPDI进行比较在退火时发生表面反应。虽然DPDI本身由于缺乏适当的官能团而不会产生长程有序结构,但3deh-DPDI却在Cu(111)上的Cu配位蜂窝网络中充当了放线体。这项工作的主要重点在于通过结合扫描隧道显微镜,X射线光电子能谱,X射线驻波测量和密度泛函理论的结果来分析分子间和分子与底物之间的相互作用。我们特别显示,金属原子与有机配体之间的相互作用有效地削弱了3deh-DPDI的分子-表面相互作用,从而导致与DPDI前体相比分子-基质距离增加。我们的实验结果也阐明了当前理论的适用性,即对密度泛函理论的范德华校正。

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  • 来源
    《Physical review》 |2014年第12期|125408.1-125408.8|共8页
  • 作者单位

    Department of Physics, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland,Donostia International Physics Center, Paseo Manuel Lardizabal 4, 20018 San Sebastian, Spain;

    Department of Physics, Chemistry and Biology, IFM, Linkoeping University, 58183 Linkoeping, Sweden,Surface Science Research Centre, Department of Chemistry, University of Liverpool, Liverpool, United Kingdom;

    Department of Physics, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland;

    European Synchrotron Radiation Facility, 38043 Grenoble, Cedex 9, France,Diamond Light Source Ltd, Harwell Science and Innovation Campus, Didcot, Oxfordshire, OX11 0DE, United Kingdom;

    European Synchrotron Radiation Facility, 38043 Grenoble, Cedex 9, France;

    Anorganisch-Chemisches Institut, Universitaet Heidelberg, Im Neuenheimer Feld 270, 69120 Heidelberg, Germany;

    Department of Physics, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland,Laboratory for Micro- and Nanotechnology, Paul-Scherrer-Institute, 5232 Villigen, Switzerland;

    Surface Science Research Centre, Department of Chemistry, University of Liverpool, Liverpool, United Kingdom,Department of Applied Physics, Chalmers University of Technology, 41296 Gothenburg, Sweden;

    Department of Physics, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland,Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    scanning tunneling microscopy (including chemistry induced with STM); adsorbate structure (binding sites, geometry); X-ray standing waves; density functional theory, local density approximation, gradient and other corrections;

    机译:扫描隧道显微镜(包括用STM诱导的化学反应);吸附物结构(结合位点;几何形状);X射线驻波;密度泛函理论;局部密度近似;梯度和其他校正;

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