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首页> 外文期刊>Nanoscale >Temperature-induced transitions of self-assembled phthalocyanine molecular nanoarrays at the solid-liquid interface: from randomness to order
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Temperature-induced transitions of self-assembled phthalocyanine molecular nanoarrays at the solid-liquid interface: from randomness to order

机译:温度引起的转换的自组装酞菁分子的纳米阵列固液界面:从随机性

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摘要

A promising approach to create functional nanoarrays is supramolecular self-assembly at liquid-solid interfaces. In the present investigation, we report on the self-assembly of phthalocyanine arrays using triphenylene-2,6,10-tricarboxylic acid (H3TTCA) as a molecular nanotemplate. Five different metastable arrays are achieved in the study, including a thermodynamically stable configuration. Scanning tunneling microscopy (STM) measurements and density function theory (DFT) calculations are utilized to reveal the formation mechanism of the molecular nanoarrays. In general, the transformation process of nanoarrays is regulated by the synergies of a template effect and thermodynamic balance.
机译:一个有前途的方法来创建功能纳米阵列的超分子自组装液固界面。调查,我们报告的自组装酞菁阵列使用triphenylene-2 6 10-tricarboxylic酸(H3TTCA)作为一个分子nanotemplate。亚稳数组实现在这项研究中,包括一个热力学稳定的配置。(STM)测量和密度函数理论(DFT)计算是用来揭示了形成机制的分子纳米阵列。一般来说,转换的过程纳米阵列是监管的协同效应模板效应和热力学平衡。

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