Origin of Three Fold Torsional Potential in Methylated 2-Hydroxypyridine

A. Srivastava, Rajeev Kumar Sinha, S. Saxena, T. Kundu
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引用次数: 0

Abstract

In this paper, the detailed study of the methylated 2-hydroxypyridine molecule has been carried out using resonance-enhanced multiphoton ionization (REMPI) spectroscopic technique. However, the theoretical investigations have been performed using ab initio calculations. The origin band of the molecules 4-methyl-2-hydroxypyridine (4M2HP) and 6-methyl-2-hydroxypyridine (6M2HP) was observed at 34987 cm-1 and 35405 cm-1 in their REMPI spectrum and the bands assigned as ππ* transition state. The vibronic coupling of the nπ* and ππ* transition states took place in 4M2HP, thus some low intense bands near the original band of the molecule were observed in the spectrum. However, no such kind of bands observed in 6M2HP. The π*–σ* hyperconjugation is responsible for the conformational change of the methyl group in 4M2HP upon excitation (S0→S1).
甲基化2-羟吡啶中三重扭转电位的来源
本文利用共振增强多光子电离(REMPI)光谱技术对甲基化的2-羟基吡啶分子进行了详细的研究。然而,理论研究是用从头计算进行的。4-甲基-2-羟吡啶(4M2HP)和6-甲基-2-羟吡啶(6M2HP)分子在REMPI光谱中分别位于34987 cm-1和35405 cm-1处的起始带和ππ*过渡态的起始带。在4M2HP中发生了nπ*和ππ*过渡态的振动耦合,因此在光谱中观察到分子原始带附近的一些低强度带。然而,在6M2HP中没有观察到这种条带。π* -σ *超共轭作用导致了4M2HP中甲基在激发(S0→S1)时的构象变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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