Kröner Dominik, Klaumünzer Bastian
Institut für Chemie, Universität Potsdam, Karl-Liebknecht-Str 24-25, D-14476, Potsdam, Germany.
Phys Chem Chem Phys. 2007 Sep 28;9(36):5009-17. doi: 10.1039/b705974d. Epub 2007 Jul 25.
We report quantum dynamical simulations for the laser controlled isomerization of 1-(2-cis-fluoroethenyl)-2-fluorobenzene based on one-dimensional electronic ground and excited state potentials obtained from (TD)DFT calculations. 1-(2-cis-fluoroethenyl)-2-fluorobenzene supports two chiral and one achiral atropisomers, the latter being the most stable isomer at room temperature. Using a linearly polarized IR laser pulse the molecule is excited to an internal rotation around its chiral axis, i.e. around the C-C single bond between phenyl ring and ethenyl group, changing the molecular chirality. A second linearly polarized laser pulse stops the torsion to prepare the desired enantiomeric form of the molecule. This laser control allows the selective switching between the achiral and either the left- or right-handed form of the molecule. Once the chirality is "switched on" linearly polarized UV laser pulses allow the selective change of the chirality using the electronic excited state as intermediate state.
我们基于从(TD)DFT计算获得的一维电子基态和激发态势能,报告了1-(2-顺式氟乙烯基)-2-氟苯激光控制异构化的量子动力学模拟。1-(2-顺式氟乙烯基)-2-氟苯支持两种手性和一种非手性阻转异构体,后者是室温下最稳定的异构体。使用线偏振红外激光脉冲,分子被激发围绕其手性轴进行内旋转,即围绕苯环和乙烯基之间的C-C单键旋转,从而改变分子手性。第二个线偏振激光脉冲停止扭转,以制备所需的分子对映体形式。这种激光控制允许在分子的非手性形式与左手或右手形式之间进行选择性切换。一旦手性“开启”,线偏振紫外激光脉冲允许利用电子激发态作为中间态对手性进行选择性改变。