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首页> 外文期刊>Journal of the American Chemical Society >SPECTROSCOPY OF NEUROTRANSMITTERS AND THEIR CLUSTERS .1. EVIDENCE FOR FIVE MOLECULAR CONFORMERS OF PHENETHYLAMINE IN A SUPERSONIC JET EXPANSION
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SPECTROSCOPY OF NEUROTRANSMITTERS AND THEIR CLUSTERS .1. EVIDENCE FOR FIVE MOLECULAR CONFORMERS OF PHENETHYLAMINE IN A SUPERSONIC JET EXPANSION

机译:神经发射器及其簇的光谱1。超声速射流中五亚甲基苯乙酰胺分子式的证据

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The neurotransmitter molecule phenethylamine (PEA) is studied by fluorescence excitation, mass-resolved excitation, hole burning, and dispersed emission spectroscopies. The excitation spectrum of PEA exhibits a group of five transition bands in the S-1 <-- S-0 0(0)(0) region. This group of transitions appears repetitively with the same spectral separations and intensity pattern in the higher energy regions up to 1000 cm(-1) above the origin, The hole burning spectra of these five bands show different independent spectral hole depletion features. With the observation of no blue shifted emission bands higher than the excitation energy in the dispersed emission spectra, these five transition bands can be assigned to five different molecular conformers of PEA. These molecular conformers are distinguished from each other in their alkylamine side chain conformations and the amino group spatial orientations. With the assistance of ab initio calculations, we are able to identify the conformations of these five isomers. The effects of the alkylamino chain conformation, as well as the amino group orientation, on the relative potential energies of these conformers are discussed. The significance of this work for future studies of PEA/solvent molecule clusters and the other neurotransmitters is demonstrated by the amphetamine (AMP) excitation spectrum, The conformation of the alkylamine side chain is found to have little impact on in-plane vibrational modes of the phenyl ring such as nu(6b) and nu(12).
机译:神经递质分子苯乙胺(PEA)通过荧光激发,质量分辨激发,空穴燃烧和分散发射光谱学研究。 PEA的激发光谱在S-1 <-S-0 0(0)(0)区域显示一组五个过渡带。这组过渡在原点上方高达1000 cm(-1)的较高能量区域中以相同的光谱间隔和强度模式重复出现。这五个波段的空穴燃烧光谱显示出不同的独立光谱空穴耗尽特征。在没有观察到蓝移的发射带高于分散发射光谱中的激发能的情况下,可以将这五个过渡带分配给PEA的五个不同分子构象体。这些分子构象物在其烷基胺侧链构象和氨基空间取向上彼此不同。借助从头算计算,我们能够确定这五个异构体的构象。讨论了烷基氨基链构象以及氨基取向对这些构象子的相对势能的影响。苯丙胺(AMP)激发光谱证明了这项工作对PEA /溶剂分子簇和其他神经递质的未来研究的意义。发现烷基胺侧链的构象对苯丙胺的平面振动模式几乎没有影响。苯环,例如nu(6b)和nu(12)。

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