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Atomically precise edge chlorination of nanographenes and its application in graphene nanoribbons

机译:纳米石墨烯的原子精确边缘氯化及其在石墨烯纳米带中的应用

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摘要

Chemical functionalization is one of the most powerful and widely used strategies to control the properties of nanomaterials, particularly in the field of graphene. However, the ill-defined structure of the present functionalized graphene inhibits atomically precise structural characterization and structure-correlated property modulation. Here we present a general edge chlorination protocol for atomically precise functionalization of nanographenes at different scales from 1.2 to 3.4?nm and its application in graphene nanoribbons. The well-defined edge chlorination is unambiguously confirmed by X-ray single-crystal analysis, which also discloses the characteristic non-planar molecular shape and detailed bond lengths of chlorinated nanographenes. Chlorinated nanographenes and graphene nanoribbons manifest enhanced solution processability associated with decreases in the optical band gap and frontier molecular orbital energy levels, exemplifying the structure-correlated property modulation by precise edge chlorination.
机译:化学官能化是控制纳米材料特性的最强大和广泛使用的策略之一,特别是在石墨烯领域。但是,本官能化石墨烯的结构不明确抑制了原子上精确的结构表征和与结构相关的性质调节。在这里,我们提出了一种一般的边缘氯化方案,用于在1.2至3.4?nm的不同规模上对纳米石墨烯进行原子精确功能化及其在石墨烯纳米带中的应用。 X射线单晶分析清楚地证实了定义明确的边缘氯化反应,该分析也揭示了氯化纳米石墨烯的特征性非平面分子形状和详细的键长。氯化纳米石墨烯和石墨烯纳米带表现出增强的溶液可加工性,与光学带隙和前沿分子轨道能级的降低相关,例证了通过精确边缘氯化进行结构相关性质的调节。

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