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Gating of single molecule junction conductance by charge transfer complex formation

机译:闸门的单分子结电导电荷转移复合物的形成

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摘要

The solid-state structures of organic charge transfer (CT) salts are critical in determining their mode of charge transport, and hence their unusual electrical properties, which range from semiconducting through metallic to superconducting. In contrast, using both theory and experiment, we show here that the conductance of metal vertical bar single molecule vertical bar metal junctions involving aromatic donor moieties (dialkyl-terthiophene, dialkylbenzene) increase by over an order of magnitude upon formation of charge transfer (CT) complexes with tetracyanoethylene (TCNE). This enhancement occurs because CT complex formation creates a new resonance in the transmission function, close to the metal contact Fermi energy, that is a signal of room-temperature quantum interference.
机译:有机的固态结构转移(CT)盐在决定至关重要电荷传输的模式,因此他们从不同寻常的电学特性通过金属半导体超导。和实验,我们这里显示电导金属竖线垂直单分子酒吧金属连接涉及芳香捐献者增加了一个数量级电荷转移(CT)复合物的形成tetracyanoethylene (TCNE)。是因为CT复杂地层创建一个新的的共振传输函数,接近费米能级的金属接触,这是一个信号室温量子干涉。

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