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The organization of 2,3-iron-naphthalocyanine molecules on substrate as revealed by scanning tunneling microscopy

机译:通过扫描隧道显微镜显示在基底上组织2,3-铁 - 萘酞菁分子

摘要

Surface morphology of thin molecular layer of 2,3-Iron-naphthalocyanine (2,3 FeNPc) was studied by scanning tunneling microscopy (STM) at the ambient conditions. Organic layer with thickness of 40 nm was vapour phase deposited on amorphous carbon substrate. The STM images have revealed the pecularities of surface molecular organization from large range (hundreds of nm) down to atomic scale. Arrays of locally ordered linear stuctures have been distinguished as the main morphological features of the examined surface. At several places the well-ordered STM patterns have been distinguished at the atomic scale. They can be described as stacks of periodicity approximatelly 0.4 nm in a row and 1.5 nm between stacks. These results can be explained by arrangement of 2,3-FeNPh molecules in stacks with a main plane being perpendicular to the substrate surface.
机译:在环境条件下,通过扫描隧道显微镜(STM)研究了2,3-铁-萘菁(2,3 FeNPc)的薄分子层的表面形态。将厚度为40 nm的有机层气相沉积在非晶碳衬底上。 STM图像显示了从大范围(数百纳米)到原子尺度的表面分子组织的特殊程度。局部有序线性结构的阵列已被区分为被检查表面的主要形态特征。在原子尺度上,已经在几个地方区分了井井有条的STM模式。可以将它们描述为周期性堆栈,行间距约为0.4 nm,堆栈之间的间距为1.5 nm。这些结果可以通过将2,3-FeNPh分子堆叠成一个主平面垂直于基材表面的方式来解释。

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