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Monoradicals and Diradicals of Dibenzofluoreno[3,2-b]fluorene Isomers: Mechanisms of Electronic Derealization

机译:Dibenzofluoreno的单轨和Diradicals [3,2-B]芴异构体:电子致命机制

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摘要

The preparation of a series of dibenzo- and tetrabenzo-fused fluoreno[3,2-k]fluorenes is disclosed, and the diradicaloid properties of these molecules are compared with those of a similar, previously reported series of anthracene-based diradicaloids. Insights on the diradical mode of derealization tuning by constitutional isomerism of the external naphthalenes has been explored by means of the physical approach (dissection of the electronic properties in terms of electronic repulsion and transfer integral) of diradicals. This study has also been extended to the redox species of the two series of compounds and found that the radical cations have the same stabilization mode by derealization that the neutral diradicals while the radical anions, contrarily, are stabilized by aromatization of the central core. The synthesis of the fluorenofluorene series and their characterization by electronic absorption and vibrational Raman spectroscopies, X-ray diffraction, SQUID measurements, electrochemistry, in situ UV-vis-NIR absorption spectroelectro-chemistry, and theoretical calculations are presented. This work attempts to unify the properties of different series of diradicaloids in a common argument as well as the properties of the carbocations and carbanions derived from them.
机译:公开了一系列二苯并和四苯并熔融芴[3,2-k]含氟的制备,并将这些分子的Diradacaloid属性与类似的先前报告的基于蒽的Diradicoids系列的。通过物理方法(在电子排斥和转移整体方面的电子特性解剖和转移成分)的物理方法探索了对外部萘的构族异构的Diradical致命调整的思想洞察。该研究还扩展到两种化合物的氧化还原种类,发现自由基阳离子通过使中性的Diradics在基团阴离子中通过中央核心的芳族化稳定而具有相同的稳定模式。提出了氟苯芴系列的合成及其特性,通过电子吸收和振动拉曼光谱,X射线衍射,鱿鱼测量,电化学,原位UV - Vis-Nir吸收光谱电能和理论计算。这项工作试图统一普通论证中不同系列的Diradicoids的性质以及派对的碳水化合物和碳水化合物的性质。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第48期|20444-20455|共12页
  • 作者单位

    Department of Materials Science School of Engineering The University of Shiga Prefecture Hikone Shiga 522-8533 Japan;

    Department of Chemistry & Biochemistry and the Materials Science Institute University of Oregon Eugene Oregon 97403-1253 United States;

    Department of Physical Chemistry University of Malaga Malaga 29071 Spain;

    Department of Materials Engineering Science Graduate School of Engineering Science and Quantum Information and Quantum Biology Division Institute for Open and Transdisciplinary Research Initiatives Osaka University Toyonaka Osaka 560-8531 Japan;

    Department of Chemistry & Chemical Biology Cornell University Ithaca New York 14853 United States;

    Department of Inorganic Chemistry and Instituto de Ciencia Molecular Universidad de Valencia Paterna 46980 Spain;

    Division of Molecular Science Faculty of Science and Technology Gunma University Kiryu Gunma 376-8515 Japan;

    Division of Molecular Science Faculty of Science and Technology Gunma University Kiryu Gunma 376-8515 Japan;

    Department of Physical Chemistry University of Malaga Malaga 29071 Spain;

    Department of Chemistry & Biochemistry and the Materials Science Institute University of Oregon Eugene Oregon 97403-1253 United States;

    Department of Materials Science School of Engineering The University of Shiga Prefecture Hikone Shiga 522-8533 Japan;

    Department of Materials Engineering Science Graduate School of Engineering Science Center for Spintronics Research Network Graduate School of Engineering Science and Quantum Information and Quantum Biology Division Institute for Open and Transdisciplinary Research Initiatives Osaka University Toyonaka Osaka 560-8531 Japan;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:55

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