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首页> 外文期刊>Organic Electronics >Non-covalent functionalization of single walled carbon nanotubes with Fe-/Co-porphyrin and Co-phthalocyanine for field-effect transistor applications
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Non-covalent functionalization of single walled carbon nanotubes with Fe-/Co-porphyrin and Co-phthalocyanine for field-effect transistor applications

机译:具有Fe-/ Co-porphylin和Co-Phathalocyanine的单壁碳纳米管的非共价官能化用于场效应晶体管应用

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摘要

This work reports the non-covalent functionalization of SWNTs with Fe-porphyrin, Co-porphyrin and Co-phthalocyanine molecules. The functionalized SWNTs were first characterized using Raman and X-ray photo-electron spectroscopies. Observations down to nanoscale resolution were also performed by atomic force microscopy, as well as scanning and transmission electron microscopies. The spectroscopic methods evidenced an electronic interaction between the metal-centered molecules and the SWNTs, ensuring the robustness of the functionalization. High resolution microscopy characterizations reveal that the porphyrin and phthalocyanine molecules are adsorbed on the surface of SWNTs. The electrical characterizations show a weak charge transfer between those grafted molecules and the SWNTs, confirming the electronic interaction between the molecules and the SWNTs. Density functional theory (DFT) supports experimental data and helps understanding the experimental results of selective interaction of metal complexes with one type of semiconducting SWNTs.
机译:该工作报告了具有Fe-卟啉,共卟啉和共酞菁分子的SWNT的非共价官能化。首先使用拉曼和X射线光电光谱来表征官能化SWNT。也通过原子力显微镜以及扫描和透射电子显微镜进行降低至纳米级分辨率。光谱方法证明了金属居中分子和瑞斯科茨之间的电子相互作用,确保了功能化的稳健性。高分辨率显微镜表现揭示卟啉和酞菁分子被吸附在SWNT的表面上。电学特性显示在那些接枝分子和SWNT之间的弱电荷转移,证实了分子与SWNT之间的电子相互作用。密度函数理论(DFT)支持实验数据,并有助于了解金属配合物的选择性相互作用与一种半导体SWNT的实验结果。

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  • 来源
    《Organic Electronics 》 |2021年第9期| 106212.1-106212.10| 共10页
  • 作者单位

    COSYS-LISIS Univ Gustave Eiffel IFSTTAR F-77454 Mame-la-Vallee France Laboratory of Physics of Interfaces and Thin Films UMR 7647 CNRS/ Ecole Polytechnique IPParis 91128 Palaiseau France;

    MSME Univ Gustave Eiffel CNRS Univ Paris Est Creteil UMR 8208 F-77454 Marne-la-Vallee France;

    Laboratory of Physics of Interfaces and Thin Films UMR 7647 CNRS/ Ecole Polytechnique IPParis 91128 Palaiseau France;

    Univ Paris Est Creteil CNRS ICMPE UMR 7182 2 rue Henri Dunant 94320 Thiais France;

    Univ Paris Est Creteil CNRS ICMPE UMR 7182 2 rue Henri Dunant 94320 Thiais France;

    Univ Paris Est Creteil CNRS ICMPE UMR 7182 2 rue Henri Dunant 94320 Thiais France;

    MSME Univ Gustave Eiffel CNRS Univ Paris Est Creteil UMR 8208 F-77454 Marne-la-Vallee France;

    Laboratory of Physics of Interfaces and Thin Films UMR 7647 CNRS/ Ecole Polytechnique IPParis 91128 Palaiseau France;

    Laboratory of Physics of Interfaces and Thin Films UMR 7647 CNRS/ Ecole Polytechnique IPParis 91128 Palaiseau France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SWNTs; CNTFETs; Noncovalent functionalization; Porphyrin; Phthalocyanine;

    机译:瑞斯;CNTFET;非价官能化;卟啉;酞菁;

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