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首页> 外文期刊>Chemistry - A European Journal >Unexpected Deformations Induced by Surface Interaction and Chiral Self-Assembly of CoII-Tetraphenylporphyrin (Co-TPP) Adsorbed on Cu(110): A Combined STM and Periodic DFT Study
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Unexpected Deformations Induced by Surface Interaction and Chiral Self-Assembly of CoII-Tetraphenylporphyrin (Co-TPP) Adsorbed on Cu(110): A Combined STM and Periodic DFT Study

机译:Co(sup> II -四苯基卟啉(Co-TPP)吸附在Cu(110)上的表面相互作用和手性自组装引起的意外变形:STM和定期DFT的组合研究

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摘要

In a combined scanning tunnelling microscopy (STM) and periodic density functional theory (DFT) study, we present the first comprehensive picture of the energy costs and gains that drive the adsorption and chiral self-assembly of highly distorted CoII-tetraphenylporphyrin (Co-TPP) conformers on the Cu(110) surface. Periodic, semi-local DFT calculations reveal a strong energetic preference for Co-TPP molecules to adsorb at the short-bridge site when organised within a domain. At this adsorption site, a substantial chemical interaction between the molecular core and the surface causes the porphyrin macrocycle to accommodate close to the surface and in a flat geometry, which induces considerable tilting distortions in the phenyl groups. Experimental STM images can be explained in terms of these conformational changes and adsorption-induced electronic effects. For the ordered structure we unambiguously show that the substantial energy gain from the molecule–surface interaction recuperates the high cost of the induced molecular and surface deformations as compared with gas phase molecules. Conversely, singly adsorbed molecules prefer a long-bridge adsorption site and adopt a non-planar, saddle-shape conformation. By using a van der Waals density functional correction scheme, we found that the intermolecular π–π interactions make the distorted conformer more stable than the saddle conformer within the organic assembly. These interactions drive supramolecular assembly and also generate chiral expression in the system, pinning individual molecules in a propeller-like conformation and directing their assembly along non-symmetric directions that lead to the coexistence of mirror-image chiral domains. Our observations reveal that a strong macrocycle–surface interaction can trigger and stabilise highly unexpected deformations of the molecular structure and thus substantially extend the range of chemistries possible within these systems.
机译:在结合扫描隧道显微镜(STM)和周期性密度泛函理论(DFT)的研究中,我们展示了驱动高畸变的Co II的吸附和手性自组装的能源成本和收益的第一张综合图-四苯基卟啉(Co-TPP)构象体。周期性的半局部DFT计算显示,当在域内组织时,Co-TPP分子强烈希望吸收短桥位。在此吸附位点,分子核心与表面之间的大量化学相互作用导致卟啉大环以接近表面的平坦几何形状容纳,从而在苯基中引起相当大的倾斜变形。可以根据这些构象变化和吸附诱导的电子效应来解释STM实验图像。对于有序结构,我们明确地表明,与气相分子相比,分子与表面相互作用的大量能量回收弥补了诱导的分子和表面变形的高昂代价。相反,单个吸附的分子更喜欢长桥吸附位点,并采用非平面的鞍形构象。通过使用范德华斯密度泛函校正方案,我们发现分子间的π-π相互作用使扭曲的构象异构体比有机组装内的鞍形构象异构体更稳定。这些相互作用驱动超分子组装,并在系统中产生手性表达,将单个分子固定在螺旋桨状构象中,并沿非对称方向引导其组装,从而导致镜像手性域共存。我们的观察结果表明,强大的大环-表面相互作用可以触发并稳定分子结构的高度意外变化,从而大大扩展了这些系统中可能的化学作用范围。

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