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首页> 外文期刊>Small >Scanning Probe Microscopy Investigation of Self-Organized Perylenetetracarboxdiimide Nanostructures at Surfaces: Structural and Electronic Properties
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Scanning Probe Microscopy Investigation of Self-Organized Perylenetetracarboxdiimide Nanostructures at Surfaces: Structural and Electronic Properties

机译:表面自组织Per四碳二亚胺纳米结构的扫描探针显微镜研究:结构和电子性能

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摘要

A scanning probe microscopy investigation of the self-organization and local electronic properties of spin-coated ultrathin films of N-alkyl substituted perylenetetracarboxdiimide (PDI) is described. By carefully balancing the interplay between molecule-molecule and molecule-substrate interactions, PDI is able to form highly ordered supramolecular architectures on flat surfaces from solution. On an electrically insulating yet highly polar surface (mica) PDI forms strongly anisotropic architectures with needlelike structures with lengths of up to a few micrometers. On a conductive yet apolar surface (highly oriented pyrolytic graphite), the competition between the strong molecule-substrate interactions and the intermolecular forces leads to the generation of more disordered structures. The local electronic properties of these architectures are studied by Kelvin probe force microscopy by estimating their surface potential (SP). Quantitative measurements of the SP are obtained by analyzing the experimentally estimated SP data with a computational model, which discriminates between the intrinsic SP and the effect of long-range tip-surface interactions. The SP of PDI aggregates depends on the structural order at the supramolecular level. Narrow needles of constant width reveal identical SPs independent of length. Wider needles with a polydisperse width distribution exhibit a greater SP.
机译:描述了对N-烷基取代的tetra四羧二酰亚胺(PDI)的旋涂超薄膜的自组织和局部电子性能的扫描探针显微镜研究。通过仔细平衡分子-分子与分子-底物相互作用之间的相互作用,PDI能够从溶液中在平坦表面上形成高度有序的超分子体系结构。 PDI在电绝缘但极性极高的表面(云母)上形成具有针状结构且长度可达几微米的强各向异性结构。在导电而又非极性的表面(高度取向的热解石墨)上,强分子-底物相互作用与分子间作用力之间的竞争导致了更多无序结构的产生。这些结构的局部电子性质通过开尔文探针力显微镜通过估计其表面电势(SP)进行研究。 SP的定量测量是通过使用计算模型分析实验估算的SP数据获得的,该模型可以区分SP的固有特性和远距离尖端-表面相互作用的影响。 PDI聚集体的SP取决于超分子水平的结构顺序。恒定宽度的窄针显示相同的SP,与长度无关。具有多分散宽度分布的较宽的针头具有较大的SP。

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