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Halogen bonds in 2D supramolecular self-assembly of organic semiconductors

机译:在2 d超分子自组装卤素债券有机半导体

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摘要

Weak interactions between bromine, sulphur, and hydrogen are shown to stabilize 2D supramolecular monolayers at the liquid-solid interface. Three different thiophene-based semiconducting organic molecules assemble into close-packed ultrathin ordered layers. A combination of scanning tunneling microscopy (STM) and density functional theory (DFT) elucidates the interactions within the monolayer. Electrostatic interactions are identified as the driving force for intermolecular Br···Br and Br···H bonding. We find that the S···S interactions of the 2D supramolecular layers correlate with the hole mobilities of thin film transistors of the same materials.
机译:弱相互作用溴、硫和氢稳定二维超分子所示在固液界面层。不同thiophene-based半导体有机分子组装成拥挤不堪的超薄命令层。隧道显微镜和密度泛函理论(DFT)论述了交互单层。确认为的驱动力分子间Br···Br和Br···H键。发现···年代2 d的交互超分子层与洞薄膜晶体管的机动性是一样的材料。

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