State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, 350002, Fuzhou, P. R. China.
State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, Liaoning, 116023, P. R. China.
Chemistry. 2018 Sep 25;24(54):14358-14362. doi: 10.1002/chem.201802930. Epub 2018 Sep 3.
Titanium-based coordination cages could be interesting for both supramolecular and photophysical chemistry. This work reports an unprecedented host-guest system, [Ti(H O) ]@Ti L , which is comprised of the first Ti-based coordination cube and the unusual titanium aquo species. Due to the abundant intra-cube O-H⋅⋅⋅O hydrogen bonds, the [Ti(H O) ]@Ti L complex is rather stable both in solid and solution states, confirmed by X-ray diffraction and ESI-MS analysis. The encapsulated [Ti(H O) ] species shows influence on the light absorption, photoluminescent, and photocurrent properties. Moreover, ultrafast transient absorption spectroscopy has been applied to study the photodynamics of both free and [Ti(H O) ] guest encapsulated Ti L cube, confirming that the host-guest system produces a slightly longer-lived excited state. Therefore, this work presents the first [Ti L ] cube with unusual [Ti(H O) ] guest and also provides an interesting supramolecular model for the host-guest photophysical study.
基于钛的配位笼在超分子和光物理化学方面可能很有趣。这项工作报道了一个前所未有的主体-客体体系,[Ti(H2O)]@TiL,它由第一个基于钛的配位立方烷和不寻常的钛水合物种组成。由于丰富的立方体内 O-H···O 氢键,[Ti(H2O)]@TiL 配合物在固态和溶液态都相当稳定,这通过 X 射线衍射和 ESI-MS 分析得到了证实。被包裹的[Ti(H2O)]物种对光吸收、光致发光和光电流性质有影响。此外,超快瞬态吸收光谱已被应用于研究游离和[Ti(H2O)]客体包裹的 TiL 立方烷的光动力学,证实主体-客体体系产生了一个寿命稍长的激发态。因此,本工作首次报道了具有不寻常[Ti(H2O)]客体的[TiL]立方烷,并为主体-客体光物理研究提供了一个有趣的超分子模型。