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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Formation of Highly Ordered Semiconducting Anthracene Monolayer Rigidly Connected to Insulating Alkanethiolate Thin Film
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Formation of Highly Ordered Semiconducting Anthracene Monolayer Rigidly Connected to Insulating Alkanethiolate Thin Film

机译:高度有序半导体蒽单层的形成刚性连接到绝缘链烷醇薄膜

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摘要

The formation and molecular structure of a self-assembled monolayer (SAM) of anthracene-substituted alkanethiol on Au(111) have been investigated by scanning tunneling microscopy and infrared reflection absorption spectroscopy. A clean and well-ordered SAM composed of densely packed "standing-up" molecules is formed by a wet-chemical process in air, followed by thermal annealing in vacuum. In the SAM, anthracene moieties are arranged in a bulklike in-plane herringbone structure and keep their crystalline ordering above room temperature, which is in contrast to the less ordering in Au nanoclusters ligated by the anthracene-alkanethiolates. In addition, hexagonal arrangement of anthracene dimer is found on the surface of the SAM. These structures remain after annealing at 400 K. Scanning tunneling spectroscopy performed on the surface shows an energy gap of similar to 3.6 eV, similar to the band gap of bulk anthracene. The above results demonstrate that the highly ordered semiconducting anthracene monolayer is successfully formed on the insulating alkanethiolate thin film and has high thermal stability due to a strong chemical bonding across the interface.
机译:通过扫描隧道显微镜和红外反射吸收光谱研究了Au(111)上的蒽取代的链烷醇的自组装单层(SAM)的形成和分子结构。由密集包装的“备用”分子组成的清洁且有序的SAM由空气中的湿化学过程形成,然后在真空中进行热退火。在SAM中,蒽部分布置在散装体内平面的流动结构中,并保持其结晶排序以上的室温,与由蒽 - 链烯醇烯酸甲酰甲酸酯连接的Au纳米团簇的排序较低。此外,在SAM的表面上发现含蒽二聚体的六边形排列。在400k的退火后,这些结构保持在表面上进行的扫描隧道光谱显示出类似于3.6eV的能隙,类似于散列蒽的带隙。上述结果表明,高度有序的半导体蒽单层在绝缘链烷醇薄膜上成功形成,并且由于界面的强化学键合而具有高的热稳定性。

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    Japan Sci &

    Technol Agcy JST Nakajima Designer Nanocluster Assembly Project ERATO Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Japan Sci &

    Technol Agcy JST Nakajima Designer Nanocluster Assembly Project ERATO Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Japan Sci &

    Technol Agcy JST Nakajima Designer Nanocluster Assembly Project ERATO Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Japan Sci &

    Technol Agcy JST Nakajima Designer Nanocluster Assembly Project ERATO Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

    Japan Sci &

    Technol Agcy JST Nakajima Designer Nanocluster Assembly Project ERATO Takatsu Ku 3-2-1 Sakado Kawasaki Kanagawa 2130012 Japan;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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