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首页> 外文期刊>Journal of Applied Physics >Investigation of electronic transport through ultrathin carbon nanomembrane junctions by conductive probe atomic force microscopy and eutectic Ga-In top contacts
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Investigation of electronic transport through ultrathin carbon nanomembrane junctions by conductive probe atomic force microscopy and eutectic Ga-In top contacts

机译:通过导电探针原子力显微镜和共晶Ga-In顶部触点研究通过超薄碳纳米膜结的电子传输

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摘要

Highly ordered self-assembled monolayers (SAMs) can be considered as functional building blocks for molecular electronics. Aromatic SAMs can be converted into a highly stable monolayer, i.e., carbon nanomembranes, via electron irradiation induced cross-linking. Here, we report the electronic transport characteristics of the pristine SAM of 4'-nitro-1,1'-biphenyl-4-thiol (NBPT) and the amino-terminated cross-linked monolayer prepared on Au/mica and Au/Si substrates with the use of a conductive probe atomic force microscope (CP-AFM) and a eutectic Ga-In (EGaIn) top electrode. The amino-terminated cross-linking monolayer exhibits a lower friction compared to the non-crosslinked SAM, as electron irradiation leads to the enhancement of both molecular rigidity and hydrophilicity. The electron irradiation effect on junction conductance was also directly observed by CP-AFM. Quantitative measurements and statistical analysis were performed by applying current-voltage spectroscopy in CP-AFM and EGaln methods. Both methods demonstrate that the cross-linking of a NBPT-SAM leads to a decrease of conductance by more than one order of magnitude, which is attributed to a partial loss of aromaticity of the SAM as well as a partial decoupling of molecules from the Au substrate. Transition voltages were found to be significantly reduced for the cross-linked monolayer. The surface roughness effect on the transport characteristics has been addressed based on a comparison between two junction platforms.
机译:高度有序的自组装单分子层(SAMs)可被视为分子电子学的功能构建基块。芳族SAM可以通过电子辐照诱导的交联转化为高度稳定的单层,即碳纳米膜。在这里,我们报告4'-硝基-1,1'-联苯-4-硫醇(NBPT)的原始SAM的电子传输特性以及在Au /云母和Au / Si基底上制备的氨基端基交联单层使用导电探针原子力显微镜(CP-AFM)和共晶Ga-In(EGaIn)顶部电极。与未交联的SAM相比,氨基末端的交联单层具有较低的摩擦力,这是因为电子辐照导致分子刚性和亲水性均得到增强。 CP-AFM还可以直接观察到电子辐照对结电导的影响。通过使用CP-AFM和EGaln方法中的电流-电压光谱法进行定量测量和统计分析。两种方法均表明NBPT-SAM的交联导致电导降低一个数量级以上,这归因于SAM芳香性的部分损失以及分子与Au的部分解偶联基质。发现交联单层的转变电压显着降低。基于两个连接平台之间的比较,已经解决了表面粗糙度对传输特性的影响。

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  • 来源
    《Journal of Applied Physics》 |2017年第5期|055103.1-055103.7|共7页
  • 作者单位

    Physics of Supramolecular Systems and Surfaces, Faculty of Physics, Bielefeld University, 33615 Bielefeld, Germany;

    Physics of Supramolecular Systems and Surfaces, Faculty of Physics, Bielefeld University, 33615 Bielefeld, Germany;

    Physics of Supramolecular Systems and Surfaces, Faculty of Physics, Bielefeld University, 33615 Bielefeld, Germany;

    Physics of Supramolecular Systems and Surfaces, Faculty of Physics, Bielefeld University, 33615 Bielefeld, Germany;

    Physics of Supramolecular Systems and Surfaces, Faculty of Physics, Bielefeld University, 33615 Bielefeld, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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