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一种具有几何灵活性的三维纳米碳。

A Geometrically Flexible Three-Dimensional Nanocarbon.

作者信息

Tang Chun, Han Han, Zhang Ruihua, de Moraes Lygia S, Qi Yue, Wu Guangcheng, Jones Christopher G, Rodriguez Isabel Hernandez, Jiao Yang, Liu Wenqi, Li Xuesong, Chen Hongliang, Bancroft Laura, Zhao Xingang, Stern Charlotte L, Guo Qing-Hui, Krzyaniak Matthew D, Wasielewski Michael R, Nelson Hosea M, Li Penghao, Stoddart J Fraser

机构信息

Department of Chemistry, The University of Hong Kong, Hong Kong SAR 999077, China.

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States.

出版信息

J Am Chem Soc. 2024 Jul 24;146(29):20158-20167. doi: 10.1021/jacs.4c05189. Epub 2024 Jul 8.

Abstract

The development of architecturally unique molecular nanocarbons by bottom-up organic synthesis is essential for accessing functional organic materials awaiting technological developments in fields such as energy, electronics, and biomedicine. Herein, we describe the design and synthesis of a triptycene-based three-dimensional (3D) nanocarbon, , with geometrical flexibility on account of its three peripheral π-panels being capable of interconverting between two curved conformations. An effective through-space electronic communication among the three π-panels of has been observed in its monocationic radical form, which exhibits an extensively delocalized spin density over the entire 3D π-system as revealed by electron paramagnetic resonance and UV-vis-NIR spectroscopies. The flexible 3D molecular architecture of , along with its densely packed superstructures in the presence of fullerenes, is revealed by microcrystal electron diffraction and single-crystal X-ray diffraction, which establish the coexistence of both propeller and tweezer conformations in the solid state. exhibits strong binding affinities for fullerenes, leading to host-guest complexes that display rapid photoinduced electron transfer within a picosecond. The outcomes of this research could pave the way for the utilization of shape and electronically complementary nanocarbons in the construction of functional coassemblies.

摘要

通过自下而上的有机合成来开发具有独特结构的分子纳米碳,对于获取在能源、电子和生物医学等领域等待技术发展的功能性有机材料至关重要。在此,我们描述了一种基于三蝶烯的三维(3D)纳米碳的设计与合成,由于其三个外围π面板能够在两种弯曲构象之间相互转换,因而具有几何灵活性。已观察到以单阳离子自由基形式存在的该纳米碳的三个π面板之间存在有效的空间电子通信,电子顺磁共振和紫外 - 可见 - 近红外光谱显示,其自旋密度在整个3Dπ系统上广泛离域。微晶电子衍射和单晶X射线衍射揭示了该纳米碳的柔性3D分子结构及其在富勒烯存在下的紧密堆积超结构,证实了固态中螺旋桨和镊子构象的共存。该纳米碳对富勒烯表现出强结合亲和力,形成主客体复合物,在皮秒内显示出快速的光致电子转移。本研究结果可为在功能性共组装体构建中利用形状和电子互补的纳米碳铺平道路。

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