Vidal Franck, Delvigne Erik, Stepanow Sebastian, Lin Nian, Barth Johannes V, Kern Klaus
Max-Planck-Institut für Festkörperforschung, Heisenbergstrasse 1, D-70569 Stuttgart, Germany.
J Am Chem Soc. 2005 Jul 20;127(28):10101-6. doi: 10.1021/ja0525049.
The self-assembly of the rodlike two-dimensional chiral molecule 4-[trans-2-(pyrid-4-yl-vinyl)] benzoic acid on the Cu(100) surface has been investigated by scanning tunneling microscopy. Upon adsorption at T>or=300 K, the molecules are deprotonated and assemble in parquet patterns when the coverage remains below a critical value. Corresponding high-resolution data reveal that the ordering implies mesoscopic chiral resolution as a result of chiroselective interactions (i.e., two domains comprise exclusively one enantiomer). When the critical coverage is exceeded, an abrupt transition to a single racemic phase is observed with a different lateral molecular coupling scheme. The shifting of the subtle balance between the weak lateral coupling, substrate bonding, and the packing requirements encountered with the increased molecular coverage is suggested to be the driving force for this homochiral-to-heterochiral phase transition.
通过扫描隧道显微镜研究了棒状二维手性分子4-[反式-2-(吡啶-4-基-乙烯基)]苯甲酸在Cu(100)表面的自组装。在T≥300 K吸附时,分子去质子化,当覆盖率低于临界值时以镶木地板图案组装。相应的高分辨率数据表明,由于手性选择性相互作用(即两个畴仅包含一种对映体),这种有序排列意味着介观手性拆分。当超过临界覆盖率时,观察到向具有不同横向分子耦合方案的单一外消旋相的突然转变。分子覆盖率增加时,弱横向耦合、底物键合和堆积要求之间微妙平衡的变化被认为是这种同手性到异手性相变的驱动力。