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Thermodynamic versus kinetic control in self-assembly of zero-, one-, quasi-two-, and two-dimensional metal-organic coordination structures

机译:自组装零,一,准二维和二维金属有机配位结构的热力学与动力学控制

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摘要

Four types of metal-organic structures exhibiting specific dimensionality were studied using scanning tunneling microscopy and Monte Carlo simulations. The four structures were self-assembled out of specifically designed molecular building blocks via the same coordination motif on an Au(111) surface. We found that the four structures behaved differently in response to thermal annealing treatments: The two-dimensional structure was under thermodynamic control while the structures of lower dimension were under kinetic control. Monte Carlo simulations revealed that the self-assembly pathways of the four structures are associated with the characteristic features of their specific heat. These findings provide insights into how the dimensionality of supramolecular coordination structures affects their thermodynamic properties. (C) 2015 AIP Publishing LLC.
机译:使用扫描隧道显微镜和蒙特卡洛模拟研究了四种具有特定尺寸的金属有机结构。这四个结构是通过Au(111)表面上的相同配位基序从特殊设计的分子构件中自行组装而成的。我们发现四种结构对热退火处理的反应不同:二维结构处于热力学控制下,而较低维的结构处于动力学控制下。蒙特卡洛模拟显示,这四个结构的自组装路径与其比热的特征相关。这些发现为超分子配位结构的尺寸如何影响其热力学性质提供了见解。 (C)2015 AIP Publishing LLC。

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