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亚甲基桥连的[6]、[8]和[10]环对亚苯基:尺寸依赖性性质和顺磁带电流

Methylene-Bridged [6]-, [8]-, and [10]Cycloparaphenylenes: Size-Dependent Properties and Paratropic Belt Currents.

作者信息

Kono Hideya, Li Yuanming, Zanasi Riccardo, Monaco Guglielmo, Summa Francesco F, Scott Lawrence T, Yagi Akiko, Itami Kenichiro

机构信息

Department of Chemistry, Graduate School of Science, Nagoya University, Nagoya 464-8602, Japan.

Institute of Transformative Bio-Molecules (WPI-ITbM), Nagoya University, Nagoya 464-8602, Japan.

出版信息

J Am Chem Soc. 2023 Apr 26;145(16):8939-8946. doi: 10.1021/jacs.2c13208. Epub 2023 Apr 12.

Abstract

Cycloparaphenylenes (CPPs) and carbon nanobelts (CNBs) represent some of the most iconic cyclic molecular nanocarbons in recent chemistry owing to their unique properties derived from rigid, strained, and cyclic π-conjugated systems. In the last decade, the synthesis of various sizes of CPPs and CNBs has been achieved that allowed not only for investigating their size-dependent properties and strategically using such properties in various applications but also understanding the fundamental features of cyclic π-conjugated systems and molecular nanocarbons in general. Herein, we report on the synthesis, size-dependent properties, and paratropic belt currents of methylene-bridged []cycloparaphenylenes ([]MCPP, = 6, 8, 10). [8]MCPP and [10]MCPP were synthesized by the same strategy we developed for [6]MCPP synthesis. With readily available ethoxy-substituted pillar[8]arene and pillar[10]arene as precursors, [8]MCPP and [10]MCPP were successfully synthesized in three steps consisting of de-ethylation, triflation, and nickel-mediated aryl-aryl coupling. The structural and electronic properties of MCPPs were investigated by nuclear magnetic resonance analyses, absorption/fluorescence measurements, X-ray crystallographic analyses, and computational studies, revealing their interesting size-dependent properties. The differences in the size dependency between MCPPs and CPPs reflect the belt-form features of MCPPs, namely, methylene-bridging effects on MCPPs. Moreover, an interesting paratropic belt current along the MCPP backbone has been uncovered both experimentally and theoretically. The H NMR chemical shifts of MCPPs confirmed the presence of a paratropic belt current, whose strength rapidly decreases with increasing nanobelt size.

摘要

环对亚苯基(CPPs)和碳纳米带(CNBs)是近年来化学领域中一些最具代表性的环状分子纳米碳,这归因于它们从刚性、应变和环状π共轭体系衍生出的独特性质。在过去十年中,已经实现了各种尺寸的CPPs和CNBs的合成,这不仅使得能够研究它们的尺寸依赖性性质,并在各种应用中战略性地利用这些性质,而且还能总体上理解环状π共轭体系和分子纳米碳的基本特征。在此,我们报告亚甲基桥连的[ ]环对亚苯基([ ]MCPP, = 6、8、10)的合成、尺寸依赖性性质和顺磁带电流。[8]MCPP和[10]MCPP是通过我们为[6]MCPP合成所开发的相同策略合成的。以易于获得的乙氧基取代的柱[8]芳烃和柱[10]芳烃作为前体,通过由脱乙基、三氟甲磺酸酯化和镍介导的芳基 - 芳基偶联组成的三步成功合成了[8]MCPP和[10]MCPP。通过核磁共振分析、吸收/荧光测量、X射线晶体学分析和计算研究对MCPPs的结构和电子性质进行了研究,揭示了它们有趣的尺寸依赖性性质。MCPPs和CPPs在尺寸依赖性上的差异反映了MCPPs的带状特征,即亚甲基桥连对MCPPs的影响。此外,在实验和理论上都发现了沿着MCPP主链的有趣的顺磁带电流。MCPPs的1H NMR化学位移证实了顺磁带电流的存在,其强度随着纳米带尺寸的增加而迅速降低。

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