Pett Virginia B, Haynes LeRoy W
Department of Chemistry, College of Wooster, 943 College Mall, Wooster, OH 44691, USA.
Acta Crystallogr C. 2008 Sep;64(Pt 9):o485-8. doi: 10.1107/S0108270108022439. Epub 2008 Aug 9.
The initial goal of this work was to verify the geometry of the product of a photochemical reaction, viz. the title compound, C(8)H(10)O(6)S, (II). Our crystallographic study firmly establishes the cis-anti-cis nature of the substituents on the cyclobutane ring. The geometry is also designated as exo, where exo signifies that the five-membered ring is on the opposite side of the central cyclobutane ring from the carboxylic acid substituents. The structure determination reveals two molecules, A and B, in the asymmetric unit that display substantially different conformations of the bicyclic core: the cyclobutane ring puckering angles are 22 and 3 degrees , and the sulfolane ring conformations are twist (S-exo) and envelope (S-endo). Intrigued by this variation, we then compared the conformations of other molecules in the Cambridge Structural Database that have sulfolane rings fused to cyclobutane rings. In this class of compound, there are five examples of saturated cyclobutane rings, with ring puckering angles ranging from 3 to 35 degrees . The sulfolane rings were more similar: four of the six molecules exhibit envelope conformations with S-endo, as in molecule B of (II). Despite the conformational differences, the hydrogen-bonding scheme for both molecules is similar: carboxyl -OH groups form hydrogen bonds with carboxyl and sulfone O atoms. Alternating A and B molecules joined by hydrogen bonds between sulfone O atoms and carboxyl -OH groups form parallel chains that extend in the ac plane. Other hydrogen bonds between the carboxyl groups link the chains along the b axis.
这项工作的最初目标是验证光化学反应产物的几何结构,即标题化合物C₈H₁₀O₆S(II)。我们的晶体学研究明确确定了环丁烷环上取代基的顺-反-顺性质。该几何结构也被指定为外型,其中外型表示五元环位于中心环丁烷环与羧酸取代基相反的一侧。结构测定揭示了不对称单元中有两个分子A和B,它们的双环核心构象存在显著差异:环丁烷环的褶皱角分别为22°和3°,四氢噻吩环的构象分别为扭曲(S-外型)和信封型(S-内型)。受这种变化的启发,我们随后比较了剑桥结构数据库中其他具有与环丁烷环稠合的四氢噻吩环的分子的构象。在这类化合物中,有五个饱和环丁烷环的例子,其环褶皱角范围为3°至35°。四氢噻吩环更为相似:六个分子中有四个呈现S-内型的信封型构象,如同(II)中的分子B。尽管构象存在差异,但两个分子的氢键模式相似:羧基-OH基团与羧基和砜O原子形成氢键。由砜O原子和羧基-OH基团之间的氢键连接的交替A和B分子形成在ac平面上延伸的平行链。羧基之间的其他氢键沿b轴连接这些链。