Tárkányi Gábor, Király Péter, Varga Szilárd, Vakulya Benedek, Soós Tibor
Laboratory for NMR Spectroscopy, Chemical Research Center of the Hungarian Academy of Sciences, Pusztaszeri út 59-67, 1025, Budapest, Hungary.
Chemistry. 2008;14(20):6078-86. doi: 10.1002/chem.200800197.
The impact of cooperativity between intermolecular interactions is demonstrated by the molecular self-recognition properties of highly enantioselective epi-cinchona bifunctional thiourea organocatalysts. Low-temperature NMR experiments in inert solvents have revealed two sets of nonequivalent resonances in equal population for thiourea-modified members of the epi-quinine and epi-quinidine families. In solution, the predominance of an asymmetric (C1) dimeric self-assembly with noteworthy structural motifs became evident: simultaneous intra- and intermolecular thiourea hydrogen bonding and a CH/pi interaction were observed. Both the stereochemical and the diverse conformational features of the system favor the observed quinoline T-shaped aromatic pi-pi stacking interaction. The structure findings are supported by quantitative proton-proton distance data that were available from NOE buildup curves. The 3D structure of the dimeric assembly has been modeled in agreement with the H-H distance restraints. Owing to the geometrical preference associated with the dimerization process, the self-assembled bifunctional system is interpreted as a charge-transfer complex with the potential for catalyst self-activation.
高度对映选择性表辛可宁双功能硫脲有机催化剂的分子自识别特性证明了分子间相互作用协同性的影响。在惰性溶剂中进行的低温核磁共振实验表明,表奎宁和表奎尼定家族中硫脲修饰成员存在两组等量的非等价共振。在溶液中,具有显著结构基序的不对称(C1)二聚体自组装占主导地位变得明显:观察到分子内和分子间同时存在硫脲氢键以及CH/π相互作用。该体系的立体化学和多样的构象特征都有利于观察到的喹啉T形芳香π-π堆积相互作用。结构发现得到了来自NOE积累曲线的定量质子-质子距离数据的支持。二聚体组装体的三维结构已根据H-H距离限制进行建模。由于二聚化过程相关的几何偏好,自组装双功能体系被解释为具有催化剂自激活潜力的电荷转移复合物。