Zeng Ziyu, Kociok-Köhn Gabriele, Woodman Timothy J, Rowan Michael G, Blagbrough Ian S
Department of Pharmacy and Pharmacology, University of Bath, Bath BA2 7AY, U.K.
Material and Chemical Characterisation Facility, University of Bath, Bath BA2 7AY, U.K.
ACS Omega. 2021 May 7;6(19):12769-12786. doi: 10.1021/acsomega.1c01093. eCollection 2021 May 18.
The through-space H NMR effect of steric compression by the lone-pair electrons of O- and N-atoms is shown in synthetic [3.3.1]oxa- and azabicycles. The electrons of the compressed proton bond are pushed away by the repulsive force generated by the lone-pair electrons of the heteroatom. There is a corresponding significant increase in the chemical shift of the compressed proton. The intensity of this deshielding effect is related to the proximity and overlap of the lone-pair or compressing atom. The steric compression decreases when the lone-pair electrons of the heteroatom and the compressed proton are not directly overlapped, for example, in [4.3.1]- and [3.2.1]azabicycles. Steric compression is also caused by a proton, deuterium, or an ethyl group close in space to the compressed proton. The protonated [3.3.1]azabicycle adopts a true-boat/true-chair conformation in its crystal lattice, but in solution the conformation is true-chair/true-chair.
在合成的[3.3.1]氧杂双环和氮杂双环中展示了氧和氮原子的孤对电子通过空间产生的H NMR效应。被压缩的质子键的电子被杂原子的孤对电子产生的排斥力推开。被压缩质子的化学位移相应地显著增加。这种去屏蔽效应的强度与孤对电子或压缩原子的接近程度和重叠有关。当杂原子的孤对电子与被压缩质子不直接重叠时,例如在[4.3.1]-和[3.2.1]氮杂双环中,空间压缩减小。空间压缩也由在空间上靠近被压缩质子的质子、氘或乙基引起。质子化的[3.3.1]氮杂双环在其晶格中采用真船型/真椅型构象,但在溶液中构象为真椅型/真椅型。