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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Temperature dependent charge transport across tunnel junctions of single-molecules and self-assembled monolayers: a comparative study
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Temperature dependent charge transport across tunnel junctions of single-molecules and self-assembled monolayers: a comparative study

机译:跨单分子和自组装单层隧道结的温度依赖性电荷传输:对比研究

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In this work we present a comparative study of the temperature behavior of charge current in both single-molecule transistors and self-assembled monolayer-based tunnel junctions with symmetrical molecules of alkanethiolates functionalized with a ferrocene (Fc) unit. The Fc unit is separated from the electrodes with two equal alkyl chains of enough length to ensure weak coupling of the Fc unit with the electrodes. These junctions do not rectify charge current and display exponential dependence with temperature with moderate slopes, which can be directly associated to the thermal broadening of the electronic occupation Fermi distribution in the electrodes. The capability to electrically gate the molecular frontier orbital of the Fc (here the highest occupied molecular orbital, HOMO) in the single-molecule transistor, not possible in the two-terminal SAM-based junctions, allows for a detailed comparative between the two classes of junctions. Our findings demonstrate that, although most transport characteristics are equivalent, collective effects arising from interactions between molecules in the self-assembled monolayer greatly affect the energetics of SAM-based junctions, resulting in a bias-independent tunnel current, contrary to the case of the single-molecule junction and as expected from the thermal broadening of the electronic occupation around the Fermi energy in the electrodes.
机译:在这项工作中,我们对单分子晶体管和具有二茂铁(Fc)单元功能的对称链烷硫醇盐分子的自组装单层基于隧道结的电荷电流的温度行为进行比较研究。 Fc单元通过两条长度相等的烷基链与电极隔开,以确保Fc单元与电极的弱耦合。这些结不会整流充电电流,并显示与温度呈指数关系的斜率,这可以直接与电极中电子占据费米分布的热变宽相关。电控单分子晶体管中Fc的分子前沿轨道的能力(此处为最高占据分子轨道,HOMO),这是基于两末端基于SAM的结所无法实现的,从而可以对这两种类型进行详细比较的交界处。我们的发现表明,尽管大多数传输特性是等效的,但自组装单分子层中分子之间的相互作用所产生的集体效应极大地影响了基于SAM的结的能量,从而产生了与偏压无关的隧道电流,与这种情况相反。单分子结,并且正如电极中费米能量周围电子占据空间的热扩展所预期的那样。

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