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吲哚并吲哚嗪:从理论设计到有机场效应晶体管应用的多环芳烃骨架的完整故事

Indoloindolizines: The Complete Story of a Polycyclic Aromatic Scaffold from Theoretical Design to Organic Field-Effect Transistor Applications.

作者信息

Pareek Abhishek, Mehboob Muhammad Yasir, Cieplak Maciej, Majdecki Maciej, Szabat Hubert, Noworyta Krzysztof, Połczyński Piotr, Morawiak Maja, Sharma Piyush Sindhu, Foroutan-Nejad Cina, Gaweł Przemysław

机构信息

Institute of Organic Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.

Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.

出版信息

J Am Chem Soc. 2025 Feb 19;147(7):5996-6005. doi: 10.1021/jacs.4c16189. Epub 2025 Jan 14.

Abstract

The development of stable and tunable polycyclic aromatic compounds (PACs) is crucial for the advancement of organic optoelectronics. Conventional PACs, such as acenes, often suffer from poor stability due to photooxidation and oligomerization, which are linked to their frontier molecular orbital energy levels. To address these limitations, we designed and synthesized a new class of π-expanded indoloindolizines by merging indole and indolizine moieties into a single polycyclic framework. We developed a scalable synthetic protocol to produce a wide range of π-expanded derivatives. The structural, electronic, and optical properties of these compounds were extensively characterized. We achieved precise modulation of the electronic structure by controlling the aromaticity of specific rings. Benzannulation at targeted positions allowed fine-tuning of the HOMO-LUMO gap, leading to distinct shifts in the optoelectronic properties. Single-crystal X-ray diffraction confirmed their molecular structures, while theoretical calculations provided insights into the observed experimental trends. These indoloindolizines exhibit vivid colors and fluorescence across the visible spectrum and enhanced stability against photooxidation. Reactivity studies demonstrated high regioselectivity in electrophilic substitutions, highlighting the indole-like behavior of these compounds and opening avenues for further functionalization. To showcase the practical utility of our design rules, we fabricated organic field-effect transistors (OFETs) using the newly developed indoloindolizines, which revealed remarkable performance with ambipolar charge transport properties. Overall, our work establishes indoloindolizines as a promising platform for the development of stable, tunable organic materials for optoelectronic applications. Through rational molecular design, we have provided a new pathway for molecular innovation in organic electronics.

摘要

稳定且可调节的多环芳烃化合物(PACs)的开发对于有机光电子学的发展至关重要。传统的PACs,如并苯,由于光氧化和低聚作用,常常稳定性较差,这与它们的前沿分子轨道能级有关。为了解决这些局限性,我们通过将吲哚和中氮茚部分合并到一个单一的多环框架中,设计并合成了一类新的π-扩展中氮茚吲哚。我们开发了一种可扩展的合成方案来制备多种π-扩展衍生物。对这些化合物的结构、电子和光学性质进行了广泛的表征。我们通过控制特定环的芳香性实现了电子结构的精确调制。在目标位置进行苯并稠合可以微调HOMO-LUMO能隙,从而导致光电性质发生明显变化。单晶X射线衍射证实了它们的分子结构,而理论计算则为观察到的实验趋势提供了深入见解。这些中氮茚吲哚在可见光谱范围内呈现出鲜艳的颜色和荧光,并且对光氧化具有增强的稳定性。反应性研究表明,它们在亲电取代反应中具有高区域选择性,突出了这些化合物类似吲哚的行为,并为进一步功能化开辟了途径。为了展示我们设计规则的实际效用,我们使用新开发的中氮茚吲哚制造了有机场效应晶体管(OFET),其显示出具有双极性电荷传输性质的卓越性能。总体而言,我们的工作将中氮茚吲哚确立为用于光电子应用的稳定、可调节有机材料开发的一个有前景的平台。通过合理的分子设计,我们为有机电子学中的分子创新提供了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/817f/11848911/326ff3a5caf2/ja4c16189_0001.jpg

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