首页> 外文期刊>Physical chemistry chemical physics: PCCP >Infrared spectrum of the cold ortho-fluorinated protonated neurotransmitter 2-phenylethylamine: competition between NH+center dot center dot center dot pi and NH+center dot center dot center dot F interactions
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Infrared spectrum of the cold ortho-fluorinated protonated neurotransmitter 2-phenylethylamine: competition between NH+center dot center dot center dot pi and NH+center dot center dot center dot F interactions

机译:冷的邻氟化质子化神经递质2-苯基乙胺的红外光谱:NH +中心点中心点中心点pi与NH +中心点中心点中心点F相互作用之间的竞争

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Halogenation of pharmaceutical molecules is a common tool to modify their physiological properties. The geometric, vibrational, and electronic properties of the ortho-fluorinated protonated neurotransmitter 2-phenylethylamine (oF-H(+)PEA) are characterized by infrared photodissociation (IRPD) spectroscopy in the NH stretch range using the messenger technique and dispersion-corrected density functional theory calculations at the B3LYP-D3/aug-cc-pVTZ level to elucidate the drastic effect of site-specific ortho-fluorination. The IRPD spectra of cold oF-H(+)PEA-Rg dimers (Rg = Ne, Ar) are assigned to the most stable gauche conformer (Gf1) of oF-H(+)PEA, which benefits from both NH+center dot center dot center dot pi and NH+center dot center dot center dot F interactions. A minor contribution (similar to 5%) of the slightly less stable Gf2 gauche conformer (E-0 = +1.1 kJ mol(-1)) is also identified. Comparison of oF-H(+)PEA with unsubstituted H(+)PEA reveals a much stronger NH+center dot center dot center dot pi interaction in H(+)PEA resulting in a large red shift of the bonded NH stretch frequency. This behavior is confirmed by natural bond orbital (NBO) analysis and noncovalent interaction (NCI) calculations. The Rg ligand prefers a binding site at which it can maximize the interaction with the aromatic pi electron system and the ammonium group. Although the intermolecular interactions with the Rg atoms can compete with the noncovalent intramolecular bonds, they induce only minor spectral shifts in the NH stretch range.
机译:药物分子的卤化是改变其生理特性的常用工具。邻氟化质子化神经递质2-苯基乙胺(oF-H(+)PEA)的几何,振动和电子性质,通过使用信使技术和色散校正密度的NH拉伸范围内的红外光解离(IRPD)光谱进行表征在B3LYP-D3 / aug-cc-pVTZ水平上进行功能理论计算,以阐明位点特异性邻氟化的剧烈作用。冷oF-H(+)PEA-Rg二聚体(Rg = Ne,Ar)的IRPD光谱分配给oF-H(+)PEA的最稳定的薄纱构象异构体(Gf1),这得益于NH +中心点中心点中心点pi和NH +中心点中心点中心点F相互作用。还确定了稍微不稳定的Gf2 gauche构象异构体(E-0 = +1.1 kJ mol(-1))的较小贡献(类似于5%)。 oF-H(+)PEA与未取代的H(+)PEA的比较显示H(+)PEA中更强的NH +中心点中心点中心点pi相互作用,导致键合的NH拉伸频率发生大的红移。此行为已通过自然键轨道(NBO)分析和非共价相互作用(NCI)计算得到证实。 Rg配体优选结合位点,在该结合位点它可以最大化与芳族π电子系统和铵基的相互作用。尽管与Rg原子的分子间相互作用可与非共价分子内键竞争,但它们仅在NH延伸范围内引起较小的光谱移动。

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