Fujii Asuka, Enomoto Satoko, Miyazaki Mitsuhiko, Mikami Naohiko
Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.
J Phys Chem A. 2005 Jan 13;109(1):138-41. doi: 10.1021/jp0463464.
Infrared spectroscopy of large-sized protonated methanol clusters, H(+)(MeOH)(n) (n = 4-15), was carried out in the OH stretch region to characterize the development of the hydrogen bond network with the cluster size, n. The band intensity of the free OH stretching mode decreased with n, and the band finally disappeared at n = 7. On the other hand, the broad absorption band due to hydrogen-bonded OH stretches exhibited a remarkable shift with the cluster size, and it finally converged on 3300 cm(-1) for n >/= approximately 10. The size dependence of the infrared spectra was morphologically interpreted in terms of the formation of the bicyclic hydrogen-bonded structure of the clusters.
对大型质子化甲醇团簇H⁺(MeOH)ₙ(n = 4 - 15)在OH伸缩振动区域进行了红外光谱研究,以表征氢键网络随团簇尺寸n的发展情况。游离OH伸缩振动模式的谱带强度随n减小,该谱带最终在n = 7时消失。另一方面,由于氢键作用的OH伸缩振动产生的宽吸收带随团簇尺寸有显著位移,对于n≥约10时,它最终收敛于3300 cm⁻¹。根据团簇双环氢键结构的形成,从形态学角度解释了红外光谱的尺寸依赖性。