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3-氟哌啶及N-甲基-3-氟哌啶鎓盐:轴向氟的持久性

3-Fluoropiperidines and N-methyl-3-fluoropiperidinium salts: the persistence of axial fluorine.

作者信息

Sun Aiming, Lankin David C, Hardcastle Kenneth, Snyder James P

机构信息

Department of Chemistry, Emory University, Atlanta, GA 30322, USA.

出版信息

Chemistry. 2005 Feb 18;11(5):1579-91. doi: 10.1002/chem.200400835.

Abstract

It has previously been shown that the fluorine atom in N-protonated 3-fluoropiperidine salts in water strongly prefers the axial orientation in the six-membered ring chairs. In the present work we examine the proposition that the N-methyl salts are equally disposed to present axial fluorine. Initially, we explored this point by comparing the structures of the corresponding NH2+, NHMe+, and NMe2+ salts by means of density functional theory (DFT), ab initio, and MMFF force field calculations with and without aqueous solvation models. The predictions unambiguously pointed to axial fluorine for all salts investigated, including those with simultaneous axial F and (N)Me. The calculations were followed by synthesis of the corresponding series of 4,4-diphenylpiperidinium salts. These were evaluated by one- and two-dimensional NMR spectroscopy in [D6]DMSO to fully corroborate the axial disposition of the fluorine in each of the compounds. X-ray crystal structure determinations were likewise performed for the diphenyl-3-fluoro NH2+ and NMe2+ systems to substantiate axial-F. Comparison of the X-ray structures of the fluorinated and unfluorinated NMe2+ salts reveals that the fluorine resides axial in spite of substantial steric compression. While the charge-dipole phenomenon responsible for the axial-F conformation in the parent protonated fluoropiperidinium compounds carries over to doubly alkylated salts, we show that it extends to molecular orientation in the packing of the unit cells in the solid state as well. Finally, using the computational methods that successfully motivated our synthesis and structural work, we have made predictions for a number of new structures and re-examined some parallel results reported by the Eliel group in the early 1970s. Although C-F...H-N hydrogen bonds are reported to be weak and few in number, the CF...HN charge-dipole orienting effect is a powerful directing force that matches the hydrogen-bond in both its energetic contribution and conformational consequences.

摘要

先前的研究表明,在水中N-质子化的3-氟哌啶盐中的氟原子在六元环椅式结构中强烈倾向于轴向取向。在本工作中,我们研究了N-甲基盐同样倾向于呈现轴向氟的观点。最初,我们通过密度泛函理论(DFT)、从头算以及带有和不带有水溶剂化模型的MMFF力场计算,比较了相应的NH2 +、NHMe +和NMe2 +盐的结构,以此来探究这一点。预测结果明确指出,对于所有研究的盐,包括那些同时具有轴向F和(N)Me的盐,氟都处于轴向。计算之后,合成了相应系列的4,4-二苯基哌啶鎓盐。在[D6]DMSO中通过一维和二维核磁共振光谱对这些盐进行了评估,以充分证实每种化合物中氟的轴向排列。同样对二苯基-3-氟NH2 +和NMe2 +体系进行了X射线晶体结构测定,以证实轴向F。氟化和未氟化的NMe2 +盐的X射线结构比较表明,尽管存在相当大的空间压缩,氟仍处于轴向。虽然母体质子化氟哌啶鎓化合物中导致轴向F构象的电荷 - 偶极现象延续到了双烷基化盐中,但我们表明它也延伸到了固态晶胞堆积中的分子取向。最后,使用成功推动我们进行合成和结构研究的计算方法,我们对一些新结构进行了预测,并重新审视了Eliel小组在20世纪70年代早期报道的一些平行结果。尽管据报道C - F...H - N氢键较弱且数量较少,但CF...HN电荷 - 偶极取向效应是一种强大的定向力,在能量贡献和构象结果方面与氢键相当。

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