首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dendritic aggregation of oligothiophene during desorption of 2,5-diiodothiophene multilayer and topography-induced alignment of oligothiophene nanofibers
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Dendritic aggregation of oligothiophene during desorption of 2,5-diiodothiophene multilayer and topography-induced alignment of oligothiophene nanofibers

机译:2,5-二碘噻吩多层膜解吸过程中低聚噻吩的树突状聚集和地形诱导的低聚噻吩纳米纤维排列

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The multilayer desorption behavior of 2,5-diidothiophene and the dendritic aggregation of photochemical reaction products during the desorption of 2,5-diiodothiophene multilayers have been studied. Like many other aromatic compounds, 2,5-diiodothiophene shows a multilayer desorption behavior different from the typical zeroth-order kinetics, a metastable desorption peak growth at similar to 220 K followed by a thick multilayer peak growth at similar to 235 K. Traditionally, these desorption behaviors have been attributed to the formation of three-dimensional clusters. This paper provides the direct evidence of this clustering process by producing nondesorbing photoreaction products in the multilayer and by imaging their clusters after the multilayer desorption. Oligothiophene species are produced via photochemical reactions of 2,5-diiodothiophene during the multilayer deposition at similar to 180 K in ultrahigh vacuum (UHV). Upon heating the multilayer to room temperature, the oligothiophene species forms into fibrous aggregates with a fractal dimension varying from 1.37 to 1.81 depending on their surface concentration. Using a topographical alteration of the substrate with a repeating pattern, these oligothiophene fibers can be aligned to a certain direction. This may allow in-situ fabrication of aligned conjugated polymer fibers directly on a target substrate.
机译:研究了2,5-二碘噻吩多层的解吸行为和2,5-二碘噻吩多层解吸过程中光化学反应产物的树枝状聚集。像许多其他芳香族化合物一样,2,5-二碘噻吩显示出与典型的零阶动力学不同的多层解吸行为,亚稳态解吸峰的生长类似于220 K,然后是较厚的多层峰的生长类似于235K。这些解吸行为归因于三维团簇的形成。本文通过在多层中产生不脱附的光反应产物并在多层脱附后对它们的团簇进行成像,提供了这种聚集过程的直接证据。低聚噻吩类物质是通过2,5-二碘噻吩并在超高真空(UHV)中类似于180 K的多层沉积过程中发生光化学反应产生的。将多层加热至室温后,低聚噻吩物质形成纤维状聚集体,其分形维数取决于其表面浓度,其变化范围为1.37至1.81。使用具有重复图案的基材的形貌变化,可以将这些低聚噻吩纤维对准特定方向。这可以允许在目标衬底上直接原位制造对准的共轭聚合物纤维。

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