首页> 外文会议>International Symposium on Molecular Spectroscopy >FLUORINE SUBSTITUTION IN NEUROTRANSMITTERS: MICROWAVE SPECTROSCOPY AND MODELLING OF THE CONFORMATIONAL SPACE AND NON BONDING INTERACTIONS
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FLUORINE SUBSTITUTION IN NEUROTRANSMITTERS: MICROWAVE SPECTROSCOPY AND MODELLING OF THE CONFORMATIONAL SPACE AND NON BONDING INTERACTIONS

机译:神经递质中的氟取代:微波光谱和构象空间和非粘合相互作用的建模

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Fluorine substitution in molecules is a common practice in bio-organic chemistry in order to modulate physicochemical properties and biological activity of molecules and an increasing number of drugs on the market contain fluorine, the presence of which is often of major importance to modify pharmacokinetics properties and molecular activity. The rationale for such a strategy is that fluorine is generally a stronger electron acceptor than the other halogen atoms and its size is intermediate between that of hydrogen and oxygen. We have studied two fluorinated analogs of 2-phenylethylamine (PEA), the prototype molecule for adrenergic neurotransmitters, namely: 4-Fluoro (4FPEA) and 2-Fluoro-2-phenylethylamine (2FPEA) by Molecular Beam Fourier Transform Microwave Spectroscopy in the frequency range 6-18 GHz and ab initio calculations at the MP2/6311 ++G** level.
机译:分子中的氟取代是生物有机化学的常见实践,以调节分子的物理化学性质和生物活性以及越来越多的市场上的药物含有氟,其存在往往是修饰药代动力学性质的主要重要性分子活性。这种策略的基本原理是氟通常是较强的电子受体,而不是其他卤素原子,其尺寸是氢和氧的尺寸。我们研究了两种氟化的2-苯基乙胺(豌豆),肾上腺素能神经递质的原型分子,即:通过分子束傅里叶变换微波光谱法在频率下进行4-氟(4FPEA)和2-氟-2-苯基乙胺(2FPEA)范围6-18 GHz和AB Initio计算MP2 / 6311 ++ G **级别。

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