Magnetic Properties of Cyclo[n]Carbons (n = 10–34)

Lenara I. Valiulina, Kirill Khoroshkin, V. Cherepanov, R. Valiev
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Abstract

Quantum-chemical calculations of the magnetic properties (magnetically induced ring-current strength, magnetizability) of even- and odd-number cyclo[n]carbons (n = 10–34) were carried out. The total energy of the studied molecules as a function of the external magnetic field was found for the first time. The obtained dependences predict correctly the magnetic nature of cyclo[n]carbons. For even-number aromatic cyclo[n]carbons the energy of the system increases with increasing magnetic field, while for antiaromatic sys-tems, the energy decreases. Such behavior indicates that aromatic even-number cyclo[n]carbons (n = 4k+2) are diamagnetic, whereas antiaromatic even-number cyclo[n]carbons (n = 4k) are paramagnetic. These results are confirmed by the previously calculated average magnetizability values. In the case of odd-number cyclo[n]carbons, all structures except C13 are diamagnetic. Antiaromatic C13 is paramagnetic according to average magnetizability calculations. It was shown that nonaromatic cyclo[n]carbons (n = 28–34) at high magnetic fields (B > 300 T) possess a nonlinear effect of the increase in the energy of the system with in-creasing magnetic field. This effect can be observed experimentally in NMR spectra at a magnetic field great-er than 300 T.The performed calculations demonstrate that the HF method correctly predicts the magnetic and aromatic properties of cyclo[n]carbons (n = 10–34).
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环[n]碳(n = 10-34)的磁性
用量子化学方法计算了偶数和奇数环[n]碳(n = 10-34)的磁性能(磁感应环电流强度和磁化率)。首次发现了所研究分子的总能量随外加磁场的变化规律。得到的依赖关系正确地预测了环[n]碳的磁性。对于偶数芳香环[n]碳,系统的能量随磁场的增加而增加,而对于反芳香体系,系统的能量随磁场的增加而降低。这表明芳香偶环[n]碳(n = 4k+2)具有抗磁性,而反芳香偶环[n]碳(n = 4k)具有顺磁性。这些结果被先前计算的平均磁化率值所证实。在奇数环[n]碳的情况下,除C13外,所有结构都是抗磁性的。根据平均磁化率计算,反芳C13是顺磁性的。结果表明,在强磁场条件下(B > 300 T),非芳香环[n]碳(n = 28 ~ 34)的体系能量随磁场的增加呈非线性变化。这种效应可以在大于300 t磁场的核磁共振光谱中观察到。计算表明,HF方法正确地预测了环[n]碳(n = 10-34)的磁性和芳族性质。
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