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Raman Optical Activity and Raman Spectra of Amphetamine Species—Quantum Chemical Model Calculations and Experiments

机译:苯丙胺物种的拉曼光学活性和拉曼光谱—量子化学模型的计算和实验

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Theoretical calculations and preliminary measurements of vibrational Raman optical activity (ROA) spectra of different species of amphetamine (amphetamine and amphetamine-H+) are reported for the first time. The quantum chemical calculations were carried out as hybrid ab initio DFT-molecular orbital calculations by use of the Gaussian 03W program, based on complete geometry minimizations of the conformational energy of the S-(+)-amphetamine molecule, the S-(+)-amphetamine-H+ ion, and the R-(–)-amphetamine molecule. Following this, harmonic frequency calculations have been made, providing information about the cation vibrational bands, expected in salts of single anions (chlorides) as well as in salts of anions with internal bonds (sulfates, hydrogen phosphates, etc.). It shows that the kind of anion should be given better attention, as so far it has often not been the case, when the spectra are employed for identification purposes. The DFT calculations show that the most stable conformations are those allowing for close contact between the aromatic ring and the amine hydrogen atoms. The internal rotational barrier within the same amphetamine enantiomer has a considerable influence on the Raman and ROA spectra. As predicted the experimental ROA spectra were found to depend on the chirality. Two street samples, provided by the London Police, were also measured and compared to the calculated ROA spectra. The street samples were found to contain different enantiomers of the protonated amphetamine-H+ sulfate. According to the present study the AMPH+ ion in aqueous sulfate solution seems to adopt a conformation in which the phenyl and ammonium groups are in transpositions, similar to what has been found in the solid state.
机译:首次报道了不同种类的苯丙胺(苯丙胺和苯丙胺-H +)的振动拉曼光学活性(ROA)光谱的理论计算和初步测量。基于S-(+)-苯丙胺分子S-(+)的构象能的完全几何最小化,通过使用高斯03W程序,作为混合的从头算DFT分子轨道计算来进行量子化学计算。 -苯丙胺-H +离子和R-(-)-苯丙胺分子。此后,进行了谐波频率计算,提供了有关阳离子振动带的信息,这些振动是在单个阴离子的盐(氯化物)以及带有内部键的阴离子的盐(硫酸盐,磷酸氢盐等)中预期的。它表明,当将光谱用于鉴定目的时,应该更好地注意阴离子的种类,到目前为止,情况并非如此。 DFT计算表明,最稳定的构象是允许芳环与胺氢原子紧密接触的构象。同一苯丙胺对映体内部的内部旋转势垒对拉曼光谱和ROA光谱有很大影响。如所预测的,发现实验性ROA光谱取决于手性。还测量了伦敦警察提供的两个街道样本,并将其与计算出的ROA光谱进行比较。发现街道样品含有质子化的苯丙胺-H +硫酸盐的不同对映异构体。根据本研究,硫酸盐水溶液中的AMPH +离子似乎采用了一种构象,其中的苯基和铵基处于转位状态,类似于在固态中发现的构象。

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