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Efficient room-temperature synthesis of a highly strained carbon nanohoop fragment of buckminsterfullerene

机译:高效室温合成buckminsterfullerene的高应变碳纳米环片段

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摘要

Warped carbon-rich molecules have captured the imagination of scientists across many disciplines. Owing to their promising materials properties and challenging synthesis, strained hydrocarbons are attractive targets that push the limits of synthetic methods and molecular design. Herein we report the synthesis and characterization of [5]cycloparaphenylene ([5]CPP), a carbon nanohoop that can be envisaged as an open tubular fragment of C_(60), the equator of C_(70) fullerene and the unit cycle of a [5,5] armchair carbon nanotube. Given its calculated 119 kcal mol~(-1) strain energy and severely distorted benzene rings, this synthesis, which employs a room-temperature macrocyclization of a diboronate precursor, single-electron reduction and elimination, is remarkably mild and high yielding (27% over three steps). Single-crystal X-ray diffraction data were obtained to confirm its geometry and previously disputed benzenoid character. First and second pseudoreversible oxidation and reduction events were observed via cyclic voltammetry. The ease of synthesis, high solubility and narrowest optical HOMO/LUMO gap of any para-polyphenylene synthesized make [5]CPP a desirable new material for organic electronics.
机译:翘曲的富碳分子吸引了许多学科的科学家的想象力。由于其有前途的材料特性和具有挑战性的合成方法,应滤碳氢化合物是吸引人的目标,它们突破了合成方法和分子设计的局限。本文中,我们报道了[5]环对亚苯基([5] CPP)的合成和表征,这是一种碳纳米环,可以设想为C_(60)的开放管状片段,C_(70)富勒烯的赤道和C_(70)的单位循环[5,5]扶手椅碳纳米管。鉴于其计算得出的119 kcal mol〜(-1)应变能和严重变形的苯环,该合成方法使用了二硼酸酯前体的室温大环化,单电子还原和消除,非常温和且高收率(27%超过三个步骤)。获得了单晶X射线衍射数据,以确认其几何形状和先前有争议的苯甲特性。通过循环伏安法观察到第一和第二假可逆氧化和还原事件。 [5] CPP易于合成,高溶解度和最窄的光学对位HOMO / LUMO间隙,使得对位[5] CPP成为有机电子学的理想新材料。

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