A Study of the Dipole Moments and Theoretical Vibrational Frequencies of Dihydroxy Benzenes

R. Amrutha, Linu Sam, P. Chandran
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Abstract

Dihydroxy benzenes are of considerable interest because the stabilities of the molecular H-bond as well as the interaction between the pi charges of the benzene ring and the OH group[1]. The three isomers of di-hydroxy benzene namely, catechol, resorcinol, hydroquinol are taken into consideration here. Gaussian software[2] was used to carry out the studies. The dipole moments and the theoretical vibrational frequencies are analyzed. Only hydroquinol being a symmetrical molecule has a zero dipole moment. Substitution also has a marked effect on the dipole moment. The dipole moment is extremely high for tetra substitution. The vibrational frequencies reflect the steric hindrance caused by the position of the two hydroxyl groups and confirm the earlier findings of CC bond elongation or contraction and ∠CCO bending.
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二羟基苯偶极矩和理论振动频率的研究
由于分子氢键的稳定性以及苯环上的π电荷与羟基之间的相互作用,二羟基苯引起了相当大的兴趣[1]。二羟基苯的三种同分异构体即儿茶酚、间苯二酚和对苯二酚。采用高斯软件[2]进行研究。分析了偶极矩和理论振动频率。只有对苯二酚是对称分子偶极矩为零。取代对偶极矩也有显著的影响。四元取代的偶极矩非常高。振动频率反映了由两个羟基的位置引起的位阻,并证实了CC键伸长或收缩和∠CCO弯曲的早期发现。
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