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Adsorption of polyiodobenzene molecules on the Pt(111) surface using van der Waals density functional theory

机译:范德华密度泛函理论研究聚碘苯分子在Pt(111)表面的吸附

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摘要

Adsorption of aromatic molecules on surfaces is widely studied due to applications in molecular electronics. In this work, the adsorption of iodobenzene molecules on the Pt(111) surface has been studied using density functional theory. Iodobenzene molecules, with various numbers of iodine atoms, have two non-dissociative adsorption minima. One structure exhibits chemisorption between the ring and the surface (short-range) and the other structure exhibits chemisorption between the iodine ions and the surface (long-range). Both structures have a strong van der Waals interaction with the surface. In general, the adsorption energy increases as the number of iodine atoms increases. The dissociated structure of monoiodobenzene was investigated, and the dissociation barrier and the barrier between the short- and longrange states were compared.
机译:由于在分子电子学中的应用,广泛研究了芳族分子在表面上的吸附。在这项工作中,已使用密度泛函理论研究了碘苯分子在Pt(111)表面的吸附。碘原子数目不同的碘苯分子具有两个非解离吸附最小值。一种结构在环和表面之间表现出化学吸附(短程),另一种结构在碘离子和表面之间表现出化学吸附(长程)。两种结构都与表面具有很强的范德华相互作用。通常,吸附能随着碘原子数的增加而增加。研究了单碘苯的离解结构,比较了离解能级和短程和长程态之间的能级。

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