ESRF , CS 40220, 38043 Grenoble CEDEX 9, France ; School of Physical and Geographical Sciences, Lennard-Jones Laboratories, Keele University , Staffordshire ST5 5BG, UK.
ILL , CS 20156, 38042 Grenoble CEDEX 9, France ; SNBL/ESRF , CS 40220, 38043 Grenoble CEDEX 9, France.
IUCrJ. 2015 Jul 5;2(Pt 5):490-7. doi: 10.1107/S2052252515010271. eCollection 2015 Sep 1.
The crystal structures of eight mono-methyl alkanes have been determined from single-crystal or high-resolution powder X-ray diffraction using synchrotron radiation. Mono-methyl alkanes can be found on the cuticles of insects and are believed to act as recognition pheromones in some social species, e.g. ants, wasps etc. The molecules were synthesized as pure S enantiomers and are (S)-9-methylpentacosane, C26H54; (S)-9-methylheptacosane and (S)-11-methylheptacosane, C28H58; (S)-7-methylnonacosane, (S)-9-methylnonacosane, (S)-11-methylnonacosane and (S)-13-methylnonacosane, C30H62; and (S)-9-methylhentriacontane, C32H66. All crystallize in space group P21. Depending on the position of the methyl group on the carbon chain, two packing schemes are observed, in which the molecules pack together hexagonally as linear rods with terminal and side methyl groups clustering to form distinct motifs. Carbon-chain torsion angles deviate by less than 10° from the fully extended conformation, but with one packing form showing greater curvature than the other near the position of the methyl side group. The crystal structures are optimized by dispersion-corrected DFT calculations, because of the difficulties in refining accurate structural parameters from powder diffraction data from relatively poorly crystalline materials.
八种单甲基烷烃的晶体结构已通过使用同步辐射的单晶或高分辨率粉末 X 射线衍射来确定。单甲基烷烃可以在昆虫的角质层上找到,并且据信在某些社会性物种(如蚂蚁、黄蜂等)中作为识别信息素发挥作用。这些分子被合成纯 S 对映异构体,分别为 (S)-9-甲基二十五烷、C26H54;(S)-9-甲基十七烷和 (S)-11-甲基十七烷、C28H58;(S)-7-甲基壬烷、(S)-9-甲基壬烷、(S)-11-甲基壬烷和 (S)-13-甲基壬烷、C30H62;和 (S)-9-甲基三十烷、C32H66。所有这些都在空间群 P21 中结晶。根据甲基在碳链上的位置,观察到两种包装方案,其中分子以线性棒状形式六边形堆积,末端和侧甲基基团聚集在一起形成独特的图案。碳链扭转角偏离完全伸展构象小于 10°,但在靠近甲基侧基团位置的一种包装形式比另一种具有更大的曲率。由于从相对结晶不良的材料的粉末衍射数据中精确细化结构参数存在困难,因此通过色散校正的 DFT 计算来优化晶体结构。