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首页> 外文期刊>ACS nano >Supramolecular ordering of PTCDA molecules: The key role of dispersion forces in an unusual transition from physisorbed into chemisorbed state
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Supramolecular ordering of PTCDA molecules: The key role of dispersion forces in an unusual transition from physisorbed into chemisorbed state

机译:PTCDA分子的超分子排序:分散力在从物理吸附状态转变为化学吸附状态的异常转变中的关键作用

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Adsorption and self-assembly of large π-conjugated 3,4,9,10-perylene tetracarboxylic dianhydride (PTCDA) molecules on rutile TiO _2(110) surface have been investigated using a combination of high-resolution scanning tunneling microscopy (STM), low-energy electron diffraction, and density functional theory calculations with inclusion of Grimme treatment of the dispersion forces (DFT-D). Evolution of the STM images as a function of PTCDA coverage is caused by transition of the adsorption mode from physisorbed single adspecies and meandering stripes into spontaneously ordered chemisorbed molecular assemblies. This change in the adsorption fashion is accompanied by significant bending of the intrinsically flat, yet elastic, PTCDA molecule, which allows for strong electronic coupling of the dye adspecies with the TiO _2 substrate. Extensive DFT-D modeling has revealed that adsorption is controlled by interfacial and intermolecular dispersion forces playing a dominant role in the adsorption of single PTCDA species, their self-organization into the meandering stripes, and at the monolayer coverage acting collectively to surmount the chemisorption energy barrier associated with the molecule bending. Analysis of the resulting density of states has revealed that alignment of the energy levels and strong electronic coupling at the PTCDA/TiO _2 interface are beneficial for dye sensitization purposes.
机译:结合高分辨率扫描隧道显微镜(STM),研究了大π-共轭3,4,9,10-per四羧酸二酐(PTCDA)分子在金红石TiO _2(110)表面上的吸附和自组装,低能电子衍射和密度泛函理论计算,包括对分散力(DFT-D)进行Grimme处理。 STM图像作为PTCDA覆盖率的函数的演化是由于吸附模式从物理吸附的单一形态和蜿蜒的条带转变为自发有序的化学吸附分子组件而引起的。吸附方式的这种变化伴随着本质上平坦但又有弹性的PTCDA分子的显着弯曲,从而使染料种类与TiO _2基底之间实现了强力的电子偶联。广泛的DFT-D建模表明,吸附受界面和分子间分散力控制,在单个PTCDA物种的吸附,其自组织成曲折条纹以及在单层覆盖上共同发挥化学吸附能的作用中起主要作用。与分子弯曲相关的屏障。对所得状态密度的分析表明,PTCDA / TiO _2界面的能级对准和强电子耦合有利于染料敏化目的。

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