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Tunable Low-LUMO Boron-Doped Polycyclic Aromatic Hydrocarbons by General One-Pot C-H Borylations

机译:一般一锅C-H硼化可调谐的低LUMO掺硼多环芳烃

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摘要

Boron-doping has long been recognized as a promising LUMO energy-lowering modification of graphene and related polycyclic aromatic hydrocarbons (PAHs). Unfortunately, synthetic difficulties have been a significant bottleneck for Variable the understanding, optimization, and application of precisely boron-doped PAHs for optoelectronic purposes. Herein, a facile one-pot hydroboration electrophilic borylation cascade/dehydrogenation approach from simple alkene precursors is coupled with postsynthetic B-substitution to give access to ten ambient-stable core- and periphery-tuned boron-doped PAHs. These include large hitherto unknown doubly boron-doped analogues of anthanthrene and triangulene. Crystallographic, optical, electrochemical, and computational studies were performed to clarify the effect of boron-doped PAH shape, size, and structure on optoelectronic properties. Our molecular tuning allowed the synthesis of molecules exhibiting visible-range absorption, near-unity fluorescence quantum yields, and, to our knowledge, the most facile electrochemical reductions of any reported ambient-stable boron-doped PAHs (corresponding to LUMO energy levels as low as fullerenes). Finally, our study describes the first implementation of a precise three-coordinate boron-substituted PAH as an acceptor material in organic solar cells with power conversion efficiencies (PCEs) of up to 3%.
机译:长期以来,硼掺杂已被认为是一种有前途的降低石墨烯和相关多环芳烃(PAHs)的LUMO能量的改性方法。不幸的是,对于困难的理解,优化和精确掺杂硼掺杂的PAHs的光电应用来说,合成困难一直是瓶颈。在这里,一种简单的单烯烃前体的单锅加氢硼化亲电硼化级联/脱氢方法与合成后的B取代相结合,从而获得了十种环境稳定的核心和外围调谐的掺硼PAH。这些包括迄今未知的蒽蒽和三苯并呋喃的双硼掺杂类似物。进行了晶体学,光学,电化学和计算研究,以阐明掺硼PAH的形状,大小和结构对光电性能的影响。我们的分子调谐允许合成具有可见范围吸收,近统一的荧光量子产率的分子,并且据我们所知,在任何报道的环境稳定的掺硼多环芳烃中,电化学还原最容易(相当于LUMO能级低作为富勒烯)。最后,我们的研究描述了一种精确的三坐标硼取代的PAH作为有机太阳能电池中受体材料的首次实现,其功率转换效率(PCE)高达3%。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第22期|9096-9104|共9页
  • 作者单位

    Univ Wurzburg, Inst Organ Chem, D-97074 Wurzburg, Germany;

    Univ Wurzburg, Inst Organ Chem, D-97074 Wurzburg, Germany;

    Univ Wurzburg, Ctr Nanosyst Chem, Theodor Boveri Weg, D-97074 Wurzburg, Germany;

    Univ Wurzburg, Inst Organ Chem, D-97074 Wurzburg, Germany;

    Univ Wurzburg, Ctr Nanosyst Chem, Theodor Boveri Weg, D-97074 Wurzburg, Germany;

    Univ Wurzburg, Ctr Nanosyst Chem, Theodor Boveri Weg, D-97074 Wurzburg, Germany;

    Univ Wurzburg, Ctr Nanosyst Chem, Theodor Boveri Weg, D-97074 Wurzburg, Germany;

    Univ Wurzburg, Inst Organ Chem, D-97074 Wurzburg, Germany|Univ Wurzburg, Ctr Nanosyst Chem, Theodor Boveri Weg, D-97074 Wurzburg, 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);美国《化学文摘》(CA);
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