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Thermal selectivity of intermolecular versus intramolecular reactions on surfaces

机译:表面上分子间反应与分子内反应的热选择性

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On-surface synthesis is a promising strategy for engineering heteroatomic covalent nanoarchitectures with prospects in electronics, optoelectronics and photovoltaics. Here we report the thermal tunability of reaction pathways of a molecular precursor in order to select intramolecular versus intermolecular reactions, yielding monomeric or polymeric phthalocyanine derivatives, respectively. Deposition of tetra-aza-porphyrin species bearing ethyl termini on Au(111) held at room temperature results in a close-packed assembly. Upon annealing from room temperature to 275?°C, the molecular precursors undergo a series of covalent reactions via their ethyl termini, giving rise to phthalocyanine tapes. However, deposition of the tetra-aza-porphyrin derivatives on Au(111) held at 300?°C results in the formation and self-assembly of monomeric phthalocyanines. A systematic scanning tunnelling microscopy study of reaction intermediates, combined with density functional calculations, suggests a [2+2] cycloaddition as responsible for the initial linkage between molecular precursors, whereas the monomeric reaction is rationalized as an electrocyclic ring closure.
机译:表面合成是一种工程化杂原子共价纳米结构的有前途的策略,在电子,光电和光伏领域具有前景。在这里,我们报告分子前体反应路径的热可调性,以便选择分子内反应与分子间反应,分别产生单体或聚合的酞菁衍生物。室温下在Au(111)上沉积带有乙基末端的四氮杂卟啉物质会导致组装紧密。从室温退火至275°C后,分子前体通过其乙基末端进行一系列共价反应,从而生成酞菁带。但是,四氮杂卟啉衍生物在保持在300℃的Au(111)上沉积会形成单体酞菁并形成自组装体。对反应中间体的系统扫描隧道显微镜研究与密度泛函计算相结合,表明[2 + 2]环加成是分子前体之间初始连接的原因,而单体反应被合理化为电环闭合。

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