Walther Philip, Puchberger Michael, Kogler F Rene, Schwarz Karlheinz, Schubert Ulrich
Institute of Materials Chemistry, Vienna University of Technology, Getreidemarkt 9, A-1060, Vienna.
Phys Chem Chem Phys. 2009 May 21;11(19):3640-7. doi: 10.1039/b820731c. Epub 2009 Mar 26.
The dynamics of carboxylate ligands on the surface of zirconium oxo clusters was investigated in two case studies. Zr4O2(methacrylate)12 was investigated by one- and two dimensional NMR spectra both in the solid state and in solution. In solution, the cluster is C2h symmetric; stepwise intramolecular exchange of the four non-equivalent ligands was observed when the temperature was raised from -80 degrees C to -50 degrees C. The individual exchange processes were assigned to different ligand positions. Ab initio molecular dynamics simulations were performed for Zr6(OH)4O4(formate)12 to study the trajectory for the rearrangement of three chelating ligands into bridging positions, i.e. the conversion of the C3-symmetric into an Oh-symmetric cluster. The observation of a dip in the energy barrier along the reaction coordinate was related to the intermediate formation of hydrogen bonds between the moving oxygen atom of the rearranging ligand and a micro3-OH group of the cluster. Thus, the motion of the ligand requires a concerted motion in three dimensions.
在两个案例研究中,对氧代锆簇表面羧酸配体的动力学进行了研究。通过一维和二维核磁共振光谱对固态和溶液中的Zr4O2(甲基丙烯酸酯)12进行了研究。在溶液中,该簇具有C2h对称性;当温度从-80℃升至-50℃时,观察到四个非等效配体的逐步分子内交换。各个交换过程被指定到不同的配体位置。对Zr6(OH)4O4(甲酸酯)12进行了从头算分子动力学模拟,以研究三个螯合配体重排到桥连位置的轨迹,即将C3对称簇转化为Oh对称簇。沿着反应坐标观察到能垒中的一个下降,这与重排配体的移动氧原子与簇的一个μ3-OH基团之间氢键的中间形成有关。因此,配体的运动需要三维协同运动。