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Prediction of azulene-based nanographene-like materials

机译:基于氮素的纳图状材料预测

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摘要

Azulene-based nanographene-like materials are predicted and studied to reveal the molecular properties of these new materials. C48H18/(G-48), C68H22/(G-68), and C88H26/(G-88) nanographenes and their isomers based on azulene molecule (azulphene) as A-48, A-68, and A-88 were studied to infer general properties for large azulphene systems. Nanotubes from azulphenes are also obtained and studied. The isoelectronic graphene and azulphene materials have significant differences concerning, e.g., electric dipole, aromaticity, bond length, and bond stress. In the present studies, it was used the Density Functional Theory (DFT) and including the version of Grimme's D dispersion for the different spin multiplicities: singlet closed-shell (CS) and open-shell (OS), triplet, and quintet. For example, the ground-state of A-(48-68-88) structures is a singlet. The UV-visible spectra of all compounds exhibit maximum absorption peaks attributed to the electronic transition pi -> pi*. The IR spectrum of G-88 and A-88 shows an intense set of absorption peaks in the range [600:1700 cm 1]. The following IR frequencies could be used to indicate azulphene structures: 1124, 1162, 1436, 1542, and 1597 cm-1. The azulphene sheets have a non-uniform distribution of the electron density, unlike graphene systems, which makes them promising candidates for regioselective chemical modification. The nucleus independent chemical shift calculations show that the five-membered rings are aromatic, and the seven-membered rings are antiaromatic similar to the azulene molecule. Our study also showed smaller diameter tubes based on azulene (C57NTs) might be more stable than their conventional C6NTs isomer.
机译:预测和研究了基于Azulene的类纳米石墨烯材料,以揭示这些新材料的分子特性。研究了C48H18/(G-48)、C68H22/(G-68)和C88H26/(G-88)纳米石墨烯及其基于azulphene分子(azulphene)的异构体,如A-48、A-68和A-88,以推断大型azulphene系统的一般性质。还获得并研究了由azulphens制备的纳米管。等电子石墨烯和azulphen材料在电偶极子、芳香性、键长和键应力等方面存在显著差异。在目前的研究中,它使用了密度泛函理论(DFT),包括不同自旋多重性的格里姆D色散版本:单重态闭合壳层(CS)和开放壳层(OS)、三重态和五重态。例如,(48-68-88)结构的基态是单线态。所有化合物的紫外-可见光谱都显示出最大吸收峰,这归因于电子跃迁π->π*。G-88和A-88的红外光谱显示在[600:1700 cm 1]范围内有一组强烈的吸收峰。以下红外频率可用于指示azulphene结构:1124、1162、1436、1542和1597 cm-1。与石墨烯系统不同,azulphene片的电子密度分布不均匀,这使其成为区域选择性化学修饰的候选材料。与原子核无关的化学位移计算表明,五元环是芳香的,七元环是类似于azulene分子的反芳香的。我们的研究还表明,基于azulene(C57NTs)的小直径管可能比其常规C6NTs异构体更稳定。

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