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通过钯催化的多环化序列快速获得功能化纳米石墨烯。

Rapid access to functionalized nanographenes through a palladium-catalyzed multi-annulation sequence.

作者信息

Maekawa Takehisa, Itami Kenichiro

机构信息

Institute of Chemistry, Academia Sinica 128 Academia Road, Section 2, Nankang Taipei 115201 Taiwan

Molecule Creation Laboratory, Cluster for Pioneering Research, RIKEN, Wako Saitama 351-0198 Japan

出版信息

Chem Sci. 2025 Jan 21;16(7):3092-3098. doi: 10.1039/d4sc07995g. eCollection 2025 Feb 12.

Abstract

Nanographenes and polycyclic aromatic hydrocarbons exhibit many intriguing physical properties and have potential applications across a range of scientific fields, including electronics, catalysis, and biomedicine. To accelerate the development of such applications, efficient and reliable methods for accessing functionalized analogs are required. Herein, we report the efficient synthesis of functionalized small nanographenes from readily available iodobiaryl and diarylacetylene derivatives a one-pot, multi-annulation sequence catalyzed by a single palladium catalyst. This method enables the preparation of small nanographenes bearing various polar functional groups, such as hydroxy, amino, and pyridinic nitrogen atoms, which are otherwise difficult to incorporate. These functional groups provide valuable sites for further derivatization, allowing the modulation of small nanographenes' solubility, optoelectronic properties, and photochromic and vapochromic behaviors. Our new method thus provides a platform for facile access to novel carbon-based materials.

摘要

纳米石墨烯和多环芳烃展现出许多引人入胜的物理性质,并在包括电子学、催化和生物医学在内的一系列科学领域具有潜在应用。为了加速此类应用的发展,需要高效且可靠的方法来制备功能化类似物。在此,我们报道了从易于获得的碘代联芳基和二芳基乙炔衍生物出发,通过单一钯催化剂催化的一锅多环化反应序列,高效合成功能化小尺寸纳米石墨烯。该方法能够制备带有各种极性官能团(如羟基、氨基和吡啶氮原子)的小尺寸纳米石墨烯,而这些官能团在其他情况下很难引入。这些官能团为进一步衍生化提供了有价值的位点,从而能够调节小尺寸纳米石墨烯的溶解性、光电性质以及光致变色和气相变色行为。因此,我们的新方法为便捷获取新型碳基材料提供了一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5db9/11818060/b886a32c75a7/d4sc07995g-f1.jpg

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