首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Scanning Tunneling Microscopy and Scanning Tunneling Spectroscopy Studies of Planar and Nonplanar Naphthalocyanines on Graphite (0001).Part 1: Effect of Nonplanarity on the Adlayer Structure and Voltage-induced Flipping of Nonplanar Tin-Naphthalocyan
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Scanning Tunneling Microscopy and Scanning Tunneling Spectroscopy Studies of Planar and Nonplanar Naphthalocyanines on Graphite (0001).Part 1: Effect of Nonplanarity on the Adlayer Structure and Voltage-induced Flipping of Nonplanar Tin-Naphthalocyan

机译:平面和非平面萘酞菁在石墨上的扫描隧道显微镜和扫描隧道光谱研究(0001)。第1部分:非平面度对非平面锡-萘酞菁的吸收层结构和电压感应翻转的影响

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摘要

The adsorption of base-free naphthalocyanine (Nc),a planar molecule,and tin-naphthalocyanine (SnNc),a nonplanar molecule,on a freshly cleaved highly oriented pyrolytic graphite (HOPG) surface at low sample temperature (50 K) has been studied using a variable-temperature scanning tunneling microscope in ultra-high vacuum conditions.The planar molecules form large areas of defect-free ordered monolayer with high molecular packing density while the nonplanar molecules show different phases of adsorption with lower molecular packing density.The SnNc adlayers follow the same geometry as the graphite substrate and form pure phases of adsorption with either all molecules in a Sn~(2+) up or Sn~(2+) down geometry.Moreover,a one-dimensional selectivity is observed in still another phase of Sn~(2+) down geometry.Multilayers show a completely different kind of adsorption in each case.Nc molecules show columnar pi-stacking whereas the SnNc molecules exhibit noncolumnar stacking.Distinctly,a voltage-induced flipping of nonplanar tin-naphthalocyanine in the monolayer has been observed which can possibly be applied to single-molecular information storage.
机译:研究了在低样品温度(50 K)下新鲜裂解的高取向热解石墨(HOPG)表面上吸附的无碱萘酞菁(Nc)平面分子和锡-萘酞菁(SnNc)平面分子。在超高真空条件下使用可变温度扫描隧道显微镜,平面分子形成大面积无缺陷的有序单分子层,具有高分子堆积密度,而非平面分子则以较低的分子堆积密度表现出不同的吸附相。遵循与石墨基体相同的几何形状,并与纯Sn〜(2+)或Sn〜(2+)向下的所有分子形成纯吸附相。此外,在另一相中观察到一维选择性Sn〜(2+)向下的几何形状。多层膜在每种情况下都表现出完全不同的吸附.Nc分子显示出柱状pi堆积,而SnNc分子显示出非柱状堆积。已经观察到单层中非平面的锡-萘酞菁引起的翻转,其可能适用于单分子信息存储。

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