Institut für Organische Chemie, RWTH Aachen University, Landoltweg 1, 52074, Aachen, Germany.
Chemistry. 2019 Mar 21;25(17):4265-4273. doi: 10.1002/chem.201804963. Epub 2019 Jan 9.
Catechol ligands with aldehyde, ketone or ester groups attached in 3-position form, in the presence of titanium(IV) triscatecholate, titanium(IV) complexes. If lithium cations are the counterions, they can bind in a successive step to the salicylate units of the complex and form a dimeric triple-lithium-bridged dinuclear helicate. In solution, the dimer is in equilibrium with the monomer and the thermodynamics of the dimerization can be easily evaluated. Thus, the hierarchically assembled titanium(IV) helicates represent a lithium-dependent molecular switch. The investigation of different derivatives of the complex allows for an estimation of the influence of side chain functionalities on the energetics of the dimerization. Thus, the hierarchically assembled helicates can be used as a kind of molecular balance to determine weak interaction energies (solvophobic effects and even dispersive effects). In addition, tethering of two ligands leads to "classical" helicates. Removal or addition of lithium cations allows for a reversible switching between a compressed and expanded state, which in the case of chiral ligands can be even performed stereospecifically.
具有 3-位醛、酮或酯取代基的儿茶酚配体在钛(IV)三儿茶酚配合物的存在下形成钛(IV)配合物。如果锂离子是抗衡离子,它们可以在连续步骤中与配合物的水杨酸酯单元结合,并形成二聚体三重锂桥联双核螺旋体。在溶液中,二聚体与单体处于平衡状态,并且可以很容易地评估二聚化的热力学。因此,分层组装的钛(IV)螺旋体代表了一种依赖于锂的分子开关。对配合物的不同衍生物的研究可以估计侧链官能团对二聚化能的影响。因此,分层组装的螺旋体可用作一种分子天平来确定弱相互作用能(溶剂化效应甚至色散效应)。此外,两个配体的连接导致形成“经典”螺旋体。除去或添加锂离子可以在压缩和扩展状态之间进行可逆切换,对于手性配体,甚至可以进行立体特异性切换。