首页> 外文期刊>Journal of the American Chemical Society >A Spectroscopic Study Of Nicotine Analogue 2-phenylpyrrolidine (ppd) Using Resonant Two-photon Lonization (r2pi), Microwave, And 2d Nmr Techniques
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A Spectroscopic Study Of Nicotine Analogue 2-phenylpyrrolidine (ppd) Using Resonant Two-photon Lonization (r2pi), Microwave, And 2d Nmr Techniques

机译:尼古丁类似物2-苯基吡咯烷(ppd)的共振双光子电离(r2pi),微波和二维Nmr技术的光谱研究

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Conformational preferences of the nicotine analogue 2-phenylpyrrolidine (PPD) have been studied in both gaseous and solution phases. Theoretical calculations at the MP2 and B3LYP levels point to 5-6 stable conformers which differ in three degrees of conformational freedom; torsion between the two rings, inversion at the pyrrolidine (PY) amine, and PY ring puckering, characterized using the Cremer-Pople definition for pseudorotation. Only one conformer has a trans arrangement between the amino hydrogen and the phenyl substituent. It is 6-8 kJ mol~(-1) more stable than the cis conformers, has a perpendicular ring arrangement, and puckers at the nitrogen atom-similar to structures reported for nicotine. Resonant two-photon ionization (R2PI) data, including hole burn spectra, indicate only one conformer is present in the free jet expansion, and band contour analysis suggests assignment to the trans conformer. Confirmation was provided by microwave spectroscopy. Fifty-seven lines measured in the 48-72 GHz region were assigned to 206 b-type transitions and fitted to yield rotational constants within 2 MHz of MP2 values predicted for the trans conformer. The solution-phase conformers of PPD were studied using 1D and 2D H NMR spectroscopy and solvent-based theoretical calculations. In marked contrast to the gas phase, NMR data reveals only cis conformers present in solution. Calculations confirm increased stability for these conformers when placed in simulated chloroform or water environments. Solvent molecules are believed to disrupt a crucial N…H(ortho) stabilizing interaction present within the trans conformer.
机译:尼古丁类似物2-苯基吡咯烷(PPD)的构象偏好已在气相和溶液相中进行了研究。在MP2和B3LYP水平上的理论计算表明,有5-6个稳定构象异构体,它们在三个构象自由度上有所不同。两个环之间的扭转,吡咯烷(PY)胺的反转和PY环褶皱,其特征是使用Cremer-Pople定义进行假旋转。在氨基氢和苯基取代基之间只有一个构象异构体具有反式排列。它比顺式构象异构体稳定6-8 kJ mol〜(-1),具有垂直的环排列,并且在氮原子处出现褶皱,类似于报道的尼古丁结构。共振双光子电离(R2PI)数据(包括空穴燃烧光谱)表明,自由射流扩展中仅存在一个构象异构体,并且带轮廓分析表明已分配给反型构象异构体。通过微波光谱法进行确认。在48-72 GHz区域中测得的57条线被分配给206 b型跃迁,并拟合为在反式构象机预测的MP2值的2 MHz以内产生旋转常数。使用1D和2D H NMR光谱以及基于溶剂的理论计算研究了PPD的溶液相构象异构体。与气相形成鲜明对比的是,NMR数据显示溶液中仅存在顺式构象异构体。计算结果证实,当置于模拟氯仿或水环境中时,这些构象异构体具有更高的稳定性。据信溶剂分子会破坏反式构象异构体中关键的N…H(邻)稳定相互作用。

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