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Exploring high temperature templating in non-planar phthalocyanine/copper iodide (111) bilayers

机译:探索非平面酞菁/碘化铜(111)双层中的高温模板

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摘要

Elevated substrate temperature growth of phthalocyanine thin films is known to influence film morphology and increase crystallinity. Structural templating offers another method through which the structure of phthalocyanine films can be controlled. Here we combine the use of copper iodide (CuI) and elevated substrate temperatures and investigate their effect on the growth of a non-planar phthalocyanine system. Employing X-ray diffraction and atomic force microscopy we present detailed surface and crystal structure information. Vanadyl phthalocyanine (VOPc) is shown to adopt an edge-on orientation on CuI at ambient substrate temperatures, a behaviour in stark contrast to that of previously studied planar phthalocyanine molecules. Elevated substrate temperature is shown to result in changes in the surface morphology and structure demonstrating the versatility of the system. The crystal structure of VOPc was redetermined and used to infer the molecular orientation of the various VOPc/CuI bilayer structures.
机译:已知酞菁薄膜的基板温度升高会影响薄膜的形态并增加结晶度。结构模板提供了另一种方法,通过该方法可以控制酞菁薄膜的结构。在这里,我们结合使用碘化铜(CuI)和提高基板温度,并研究它们对非平面酞菁体系生长的影响。利用X射线衍射和原子力显微镜,我们可以提供详细的表面和晶体结构信息。钒基酞菁(VOPc)在周围环境的衬底温度下在CuI上呈沿边取向,这与先前研究的平面酞菁分子的行为形成鲜明对比。衬底温度升高表明可导致表面形态和结构发生变化,从而证明了系统的多功能性。重新确定了VOPc的晶体结构,并用于推断各种VOPc / CuI双层结构的分子取向。

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