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Probing structural features of self-assembled violanthrone-79 using two dimensional infrared spectroscopy

机译:用二维红外光谱法研究自组装紫罗兰酮79的结构特征

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Two-dimensional infrared (2D IR) spectroscopy was used to characterize the structure of a self-assembled polycyclic aromatic hydrocarbon (PAH), violanthrone-79. A local mode basis was constructed using spectroscopic and computational results of anthrone and monomer violanthrone-79. The vibrational modes in the spectral region 1550-1700 cm(-1), carbonyl stretching and in-plane ring breathing, are used as vibrational probes. The local mode basis and an electrostatic coupling model were applied to three nanoaggregate structures: parallel, antiparallel, and a chiral configuration produced by a 28 degrees rotation from parallel. Angular disorder within each nanoaggregate configuration was also explored. This investigation is a first approach to probe self-assembled PAHs with 2D IR spectroscopy. The experimental and calculated 2D IR spectra align best when the violanthrone-79 molecules are in an anti-parallel configuration within the nanoaggregate. (C) 2015 AIP Publishing LLC.
机译:使用二维红外(2D IR)光谱来表征自组装多环芳烃(PAH)violanthrone-79的结构。使用蒽酮和单体violanthrone-79的光谱和计算结果构建了局部模式基础。光谱模式为1550-1700 cm(-1)的振动模式,羰基拉伸和面内环形呼吸用作振动探针。将局部模式基础和静电耦合模型应用于三种纳米聚集体结构:平行,反平行和由平行于28度旋转产生的手性构型。还探讨了每种纳米聚集体构型内的角度紊乱。这项研究是用2D红外光谱探测自组装PAH的第一种方法。当violanthrone-79分子在纳米聚集体中呈反平行构型时,实验和计算的2D IR光谱最佳对齐。 (C)2015 AIP Publishing LLC。

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