首页> 外文期刊>The Journal of Chemical Physics >Infrared spectra of 3-hydroxy-(1H)-pyridinium cation and 3-hydroxy-(1H)-pyridinyl radical isolated in solid para-hydrogen
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Infrared spectra of 3-hydroxy-(1H)-pyridinium cation and 3-hydroxy-(1H)-pyridinyl radical isolated in solid para-hydrogen

机译:3-羟基(1H)的红外光谱 - 吡啶鎓阳离子和3-羟基 - (1H) - 固体对氢气中分离的吡啶基自由基

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摘要

As pyridine and its derivatives are regarded as building blocks of nitrogen-containing polycyclic aromatic hydrocarbons, spectral identifications of their protonated and hydrogenated species are important. The infrared (IR) absorption spectra of the 3-hydroxy-(1H)-pyridinium cation, 3-C5H4( OH)NH+, and the 3-hydroxy-(1H)-pyridinyl radical, 3-C5H4(OH) NH, produced on electron bombardment during deposition of a mixture of 3-hydroxypyridine, 3-C5H4(OH)N, and para-H-2 to form a matrix at 3.2 K were recorded. Intense IR absorption lines of trans-3-C5H4(OH) NH+ at 3594.4, 3380.0, 1610.6, 1562.2, 1319.4, 1193.8, 1167.5, and 780.4 cm(-1) and eleven weaker ones decreased in intensity after the matrix was maintained in darkness for 20 h, whereas lines of trans-3-C5H4(OH) NH at 3646.2, 3493.4, 3488.7, 1546.7, 1349.6, 1244.1, 1209.1, 1177.3, 979.8, and 685.2 cm(-1) and nine weaker ones increased. The intensities of lines of trans-3-C5H4(OH) NH decreased upon irradiation at 520 nm and diminished nearly completely upon irradiation at 450 nm, whereas those of trans-3-C5H4(OH) NH+ remained unchanged upon irradiation at 370, 450, and 520 nm. Observed vibrational wavenumbers and relative intensities of these species agree satisfactorily with the scaled harmonic vibrational wavenumbers and IR intensities predicted with the B3LYP/aug-cc-pVTZ method. The observed 3-C5H4(OH) NH+ cation and 3-C5H4(OH) NH radical are predicted to be the most stable species among all possible isomers by quantum-chemical calculations. Published by AIP Publishing.
机译:如吡啶和它的衍生物被认为是建立含氮多环芳香族烃的块,它们的质子化和氢化的物质的光谱鉴定是重要的。红外(IR)吸收的3-羟基 - (1H) - 吡啶鎓阳离子的光谱,3-C 5 H 4(OH)NH +,和3-羟基 - (1H) - 吡啶基团,3-C 5 H 4(OH)NH,产生对于3-羟基吡啶,3- C5H4(OH)N的混合物的沉积期间电子轰击,和对H-2,以形成在3.2 K含量记录的矩阵。反式-3- C5H4(OH)NH +的强IR吸收线在3594.4,3380.0,1610.6,1562.2,1319.4,1193.8,1167.5,和780.4厘米(-1)和11层较弱的强度降低基质保持在黑暗中后20小时,而在3646.2,3493.4,3488.7,1546.7,1349.6,1244.1,1209.1,1177.3,979.8,和685.2厘米(-1)和9克较弱的反式-3- C5H4(OH)NH的线增加。反式-3- C5H4(OH)NH的线的强度在520nm照射时减少并在450nm照射时几乎完全消失,而那些反式-3- C5H4的(OH)NH +照射时在370保持不变,450和520纳米。观察到的振动波数和这些物质的相对强度与和B3LYP / AUG-CC-pVTZ方法预测的经缩放的谐波振动波数和红外强度令人满意地同意。所观察到的3-C5H4(OH)NH +的阳离子和3- C5H4(OH)NH基团被预测为通过量子化学计算所有可能的异构体间的最稳定的物种。通过AIP发布发布。

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