Nygren Cara L, Wilson Chick C, Turner John F C
Department of Chemistry, University of Tennessee, Knoxville, Tennessee 37996-1600, USA.
J Phys Chem A. 2005 Mar 10;109(9):1911-9. doi: 10.1021/jp047187r.
The crystal structure of urotropine-N-oxide.formic acid, as determined from multiple temperature single-crystal X-ray diffraction experiments in the range 123-295 K and from neutron diffraction at 123 K, is reported. There is a strong hydrogen bonding interaction between the OH of formic acid and the N-oxide of urotropine, with the oxygen-oxygen distance ranging from 2.4300(10) to 2.4469(10) A. The electron density of the hydrogen atom associated with this interaction was located in the Fourier difference maps of the spherical atom refinement after all heavy atom positions were determined. The maximum of the electron density associated with the hydrogen bond is located approximately 1.16 A from the formate segment, though the distribution of electron density is very broad. The electron density associated with the H atom is thus shown by these accurate X-ray diffraction experiments to be approximately centered at all temperatures studied. This was conclusively confirmed by single-crystal neutron diffraction data obtained at 123 K, from which statistically equivalent O-H distances of 1.221(7) and 1.211(7) A were obtained.
报道了通过在123 - 295 K范围内进行的多温度单晶X射线衍射实验以及在123 K下进行的中子衍射确定的乌洛托品 - N - 氧化物·甲酸的晶体结构。甲酸的OH与乌洛托品的N - 氧化物之间存在强烈的氢键相互作用,氧 - 氧距离在2.4300(10)至2.4469(10) Å之间。在确定所有重原子位置后,与该相互作用相关的氢原子的电子密度位于球形原子精修的傅里叶差值图中。与氢键相关的电子密度最大值距离甲酸盐片段约1.16 Å,尽管电子密度分布非常宽。通过这些精确的X射线衍射实验表明,与H原子相关的电子密度在所有研究温度下大致居中。这在123 K下获得的单晶中子衍射数据中得到了确凿证实,从中获得了统计等效的O - H距离分别为1.221(7) Å和1.211(7) Å。