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Dynamics and thermal stability of surface-confined metal-organic chains

机译:表面受限的金属有机链的动力学和热稳定性

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Understanding the dynamics and thermal stability of metallosupramolecular chains on surfaces is of relevance for the development of molecular connectors in nanoelectronics or other fields. Here we present a combined study using temperature-controlled STM and Monte Carlo simulations to explore the behavior of metal-organic porphyrin chains on Cu(111) based on two-fold pyridyl-Cu-pyridyl coordination motifs. We monitor their behavior in the 180-360 K range, revealing three thermal regimes: i) flexibility up to 240 K, ii) diffusion of chain fragments and partial dissociation into a fluid phase for T > 240 K, and iii) full dissolution with temperatures exceeding similar to 320 K. The experimentally estimated reaction enthalpy of the metal-organic bonding is similar to 0.6 eV. Monte Carlo simulations reproduce qualitatively our STM observations and reveal the preference for linear and extended supramolecular chains with reduced substrate temperatures. (C) 2015 Elsevier B.V. All rights reserved.
机译:理解表面上的金属超分子链的动力学和热稳定性与纳米电子学或其他领域的分子连接器的发展有关。在这里,我们提出了使用温度控制的STM和蒙特卡洛模拟的组合研究,以基于两个吡啶基-Cu-吡啶基配位基序探索金属有机卟啉链在Cu(111)上的行为。我们监测了它们在180-360 K范围内的行为,揭示了三个热态:i)高达240 K的柔韧性,ii)链碎片的扩散和部分解离成T> 240 K的液相,以及温度超过类似于320 K的温度。实验估计的金属-有机键合反应焓为0.6 eV。蒙特卡洛模拟定性地重现了我们的STM观察结果,并揭示了对底物温度降低的线性和延伸超分子链的偏爱。 (C)2015 Elsevier B.V.保留所有权利。

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