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A New Anisotropic Charge-Equilibration Method for Self-Assembly of Organics on Metal Surface: D-Alaninol on Cu(100)

机译:金属表面有机物自组装的新型各向异性电荷平衡方法:D-丙氨酸在铜(100)上的自组装

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The supramolecular chemistry at surfaces has been extensively studied by quantum and classical computational models in order to simulate and reproduce the correct energetics and structures of adsorbed molecules on surfaces at various coverages. We have developed a classical tool able to sample the configuration space overcoming the topological constraints of the standard classical molecular dynamics. Our model is based on the charge equilibration procedure combined with an anisotropic pairwise atomic interaction where an angular dependence, with respect to the metal surface, is explicitly taken into account. The D-alaninol molecule has been chosen as a prototype of a flexible and multifunctional chemical compound which can form manifold complex configurations upon absorption on a metal surface. A detailed analysis of molecular structures and energetics of partial and full coverage has been carried out. The experimental STM image of the monolayer is correctly reproduced by our calculations, indicating that this new approach represents a step forward in the efficient simulation of complex molecular self-assembly.
机译:表面的超分子化学已经通过量子和经典计算模型进行了广泛的研究,以模拟和复制各种覆盖率的表面上吸附分子的正确的能量学和结构。我们开发了一种经典工具,能够对克服标准经典分子动力学的拓扑约束的配置空间进行采样。我们的模型基于电荷平衡程序和各向异性的成对原子相互作用,其中明确考虑了相对于金属表面的角度依赖性。 D-丙氨醇分子已被选为一种柔性和多功能化合物的原型,该化合物在吸收到金属表面后可形成多种复杂构型。对分子结构和部分和全部覆盖的能量进行了详细的分析。我们的计算正确地再现了单层的实验STM图像,表明这种新方法代表了对复杂分子自组装进行有效仿真的一步。

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