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A Decatwistacene with an Overall 170 degrees Torsion

机译:一个整体170度扭转的Decatwistacene

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摘要

Two different lengths of twistacenes, namely hexatwistacene and decatwistacene, induced by steric hindrance between imide groups and neighboring annulated benzene rings, were synthesized by bottom-up synthesis of palladium-catalyzed Suzuki cross-coupling and C-H activation. Single-crystal X-ray analyses revealed that decatwistacene, which is the longest twistacene reported, exhibits an astonishing overall end-to-end torsion angle of about 170 degrees, the largest torsion angle reported. Both twistacenes have an enhanced solubility and stability with respect to light and oxygen owing to their large twisting deformations together with much lower LUMO levels caused by the introduction of imide groups, opening a window to the narrowest chiral graphene nanoribbons with good stability and processability.
机译:通过酰亚胺基团与相邻的环状苯环之间的空间障碍诱导的两种不同长度的扭曲线,即六氯基乙烯和癸二酮,通过自下而上的合成钯催化的铃木交叉偶联和C-H活化来合成。 单晶X射线分析显示,作为报告最长的曲线叶片的癸二烯表现出惊人的总端到端扭转角度为约170度,最大的扭转角报告。 由于它们的大扭曲变形以及由引入酰亚胺基团引起的较低的LUMO水平,两种扭曲相对于光和氧气具有更大的倾斜变形,并且具有良好的稳定性和加工性,对光捻变形以及更低的亮度水平具有更大的倾斜变形,具有增强的溶解和氧气。

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